The present inventions relate to high power laser conveyance and deployment systems for use with high power laser tools and systems and in high power laser operations. More particularly, the present inventions relate to systems, methods and structures for deploying equipment and conveying high power laser energy, alone or in conjunction with other items, such as, data, electricity, gases and liquids, to remote, difficult to access or hazardous locations, such as oil wells, boreholes in the earth, pipelines, underground mines, natural gas wells, geothermal wells, surface mines, subsea structures, or nuclear reactors. The delivered high power laser energy and other items may be used at the remote location for activities, such as, monitoring, cleaning, controlling, assembling, drilling, machining, powering equipment, milling, flow assurance, decommissioning, plugging, abandonment, drilling, perforating, work overs, completions, and fracturing.
As used herein, unless specified otherwise “high power laser energy” means a laser beam having at least about 1 kW (kilowatt) of power. As used herein, unless specified otherwise “great distances” means at least about 500 m (meter). As used herein, unless specified otherwise, the term “substantial loss of power,” “substantial power loss” and similar such phrases, mean a loss of power of more than about 3.0 dB/km (decibel/kilometer) for a selected wavelength. As used herein the term “substantial power transmission” means at least about 50% transmittance.
As used herein, unless specified otherwise, the term high power laser umbilical should be given its broadest possible meaning, and would generally include: a high power laser optical fiber; one, two, three, four or more high power laser optical fibers in a bundle or assembly; a high power laser fiber(s) in a protective covering(s), and a high power laser fiber(s) in a more complex conveyance structure(s) having other channels for conveying other materials such as fluids, wires, communication optical fibers, support structures and the like; and, would include without limitation all of the high power laser transmission structures and configurations disclosed and taught in the following US Patent Applications Publication Nos.: 2010/0044106; 2010/0215326; 2010/0044103; 2012/0020631; 2012/0068006; and 2012/0266803, the entire disclosures of each of which are incorporated herein by reference.
When operating in high power laser regimes, e.g., greater than 1 kW, greater than 10 kW, greater than 20 kW, greater 50 kW, greater than 80 kW, about 100 kW and greater, the difficulties and problems associated with transmitting this high power laser energy across a rotating junction increase by several orders of magnitude compared with telecommunications power levels, e.g., milliwatts.
There is a need to deploy high power laser umbilicals over great distance from wound, coiled or compact configurations. This need extends to delivering high power laser energy from the umbilicals during deployment and recovery. The present inventions, among other things, solve these needs by providing the articles of manufacture, devices and processes taught herein.
Thus, there is provided herein a a rotational junction transmission device for transmitting very high power laser energy, the device having: a housing having a first end and a second end; a first plate rotatably affixed to the first end of the housing, and a second plate affixed to the second end of the housing, wherein the first and second plates and the housing define a rotation junction there between; a means for transferring a laser beam having at least about 20 kW of power across the rotation junction.
Further it is provided that this device may further have one or more of: a pair of optical blocks, wherein each pair of optical blocks is optically associated with a laser beam path, whereby the optical block pair is capable of transmitting the laser beam across a rotation junction; and at least one of the pair of optical blocks passes through a second laser beam path; an optical block having a plurality of transmissive reflective surfaces with in the block; at least four high power laser couplers; an optical block that has at least four transmissive reflective surfaces and each surface is optically associated with a high power optical fiber; and a ratchet mechanism.
Additionally there is provided a self adjusting optical slip ring for transmitting high power laser energy across a rotational transition, the slip ring having: a first connector defining a mechanical, optical and thermal tolerance; a second connector defining a mechanical, optical and thermal tolerance; a launching body optics defining a mechanical, optical and thermal tolerance; a receiving body optics defining a mechanical, optical and thermal tolerance tolerance; and all tolerances below a predetermined level, whereby the optical slip ring is self-aligning.
Still further there is provided an optical rotational coupling assembly, the assembly having: a continuous length of a high power umbilical having a first end section and a second end section; the end sections on either side of a rotational junction; wherein the first end is fixed in a non-rotatable manner; and, wherein the second end rotatable, in a manner that does not twist the umbilical; whereby the assembly is capable of delivering a laser beam across the rotational junction.
In general, the present inventions relate to systems, methods and equipment for deploying high power laser umbilicals from a wound, coiled or compact configuration to a deployed condition and for returning the umbilical from the deployed condition to the wound, coiled or compact configuration. In particular the present inventions relate to transmitting high power laser energy through the umbilical during deployment, during recovery and both.
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Front plate has high power laser connectors 106, 107, 108, 109, 110, 111, 112, which rotate with front plate 104. Each connector has a high power laser umbilical, e.g., 106a, 107a, 109a, 112a, respectively associated with it. Housing 103 has high power laser connectors 106b, 113, 114, 115, 109b, 107b, 112b. These connectors are fixed with the housing. Each connector has a high power laser umbilical 106c, 113c, 114c, 115c, 109c, 107c 112c respectively associated with it.
In this embodiment the connectors and fibers in one section, e.g., face plate 104, are rotationally associated with the connectors and umbilicals in another section, e.g., housing 103. Being rotationally associated either the face plate or the housing may be fixed with the other section rotating. Preferably, the fixed, non-rotating section is optically associated with the high power laser. Thus, in one configuration of the embodiment of
The OSR 100 may be associated with a reel having a long length of high power laser umbilical for use in deploying a high power laser tool. This umbilical may be at least about 500 feet, at least about 1,000 feet long, at least about 5,000 feet long, at least about 10,000 feet long and longer. As the long umbilical is unwound and deployed the OSR 100 permits the high power laser beams to be transmitted across rotating junctions that are contained within the housing 103. Thus, depending upon the diameter of the reel, the OSR 100 permits the seven about 20 kW laser beams to be transmitted and preferably continuously transmitted through, at least about 20 rotations, at least about 50 rotations, at least about 80 rotations, and more. These rotations may be in a first direction, e.g., unwinding and in the opposite direction, e.g., winding.
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Thus, the embodiment of
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A cross sectional view of the embodiment of
The percentage reflectance of each surface can be determined so that the incoming laser beam is split into seven laser beams of even power, or different and predetermined powers. Thus, for example, a 141 kW incoming beam could be split into seven 20 kW beams (the one lost kW accounting for losses through the optical block and lenses, and is merely provide to identify that losses in the optical block and lens assemblies in the OSR occur, and should preferably be kept to a minimum. If not, cooling means for the optical block and lens assemblies will be needed). Additionally, surface 216g may be less than completely reflective, allowing for a sensor to be placed on its other side to monitor if beam 217 travels the entire length of the optical block 216. These sensors allow for the input beam parameters to be monitored. The umbilicals in this embodiment may be, for example, high power optical fibers in a metal tube (“FIMT”). The surfaces could also be reflective and transmissive based upon specific wavelengths. In this manner the optical block and the OSR could function as a beam combiner or a beam splitter, depending upon the direction of travel of the laser beams. This would also, in certain situation, permit one channel or beam to be not operational, while the others could still be operating.
The housings 304 and 305 (which form the rotation junction 301) have bearings 315. The laser beam 317 traveling along a laser beam path leaves the connector 302 and enters an optical element, e.g., collimating lens 318, and traveling in collimated space enters transmissive and reflective optical block assembly 316. Upon entering optical block assembly 316 the laser beam 317, traveling along the laser beam path, encounters a series of partially reflective and partially transmissive surfaces 316a, 316b, 316c, 316d, 316e, 316f, and a final reflective surface 316g. For each surface a predetermined amount, e.g., power, of the laser beam 317 is reflected into the beam tubes. Thus, surface 316a reflects a predetermined amount of laser beam 317, as laser beam 317a into beam tube 308 and lens 318a, which focuses and launches the laser beam 317a into connector 307. The remaining laser beam 317 is transmitted through surface 316a and reaches surface 316b, where the reflecting and transmitting process is repeated. This occurs on down the line until the last surface 316g, which is completely reflective, reflects the remaining laser beam 317 into the beam tube 314, lens 318g and into the connector. Thus, surface 316b reflects a predetermined amount of laser beam 317, as laser beam 317b into beam tube 309 and lens 318b, which focuses and launches the laser beam 317b into the connector. Surface 316c reflects a predetermined amount of laser beam 317, as laser beam 317c into beam tube 310 and lens 318c, which focuses and launches the laser beam 317c into the connector. Surface 316d reflects a predetermined amount of laser beam 317, as laser beam 317d into beam tube 311 and lens 318d, which focuses and launches the laser beam 317d into the connector. Surface 316e reflects a predetermined amount of laser beam 317, as laser beam 317e into beam tube 312 and lens 318e, which focuses and launches the laser beam 317e into the connector. Surface 316f reflects a predetermined amount of laser beam 317, as laser beam 317f into beam tube 313 and lens 318f, which focuses and launches the laser beam 317f into connector 313. The umbilicals in this embodiment may be, for example, high power optical fibers in a metal tube (“FIMT”).
The reflective-transmissive surfaces, e.g., 316 provide the ability to have monitors, sensors and the like associated with them. Thus, for example, back reflections that are transmitted back up to the OSR by the umbilical would in be partially transmitted by the reflective surfaces 316a, 316b, 316c, 316d, 316e, 316f, and along monitoring beam paths 331a, 331b, 331c, 331d, 331e, 331f, respectively, through monitoring beam path optics, e.g., focusing lens, 319a, 319b, 319c, 319d, 319e, 319f, respectively, to sensors 314a, 314b, 314c, 314d, 314e, 314f respectively. Sensors are associated with data transmission assembly (e.g., optical, electric, or wireless) 320
In the embodiments of
In
In
The ORCA 5000 has an outer housing 5001 that is affixed to plate 5002. An inner shaft member or central support 5007 is affixed to plate 5003. Two high power laser umbilicals 5004, 5006, e.g., optical fibers in protective outer coverings, enter plate 5003 through cable feed through assembly 5011. Plate 5003 and shaft 5007 rotate together and plate 5002 and outer housing 5001 rotate together. Inside of the outer housing 5001 and around shaft 5007 is wrap assembly section 5008. Wrap assembly section 5008 is made up of many links, e.g., 5009, 5010. There is also a second cable feed through 5012, 5001 and a second plate 5003.
In
The short side wall 5030 has pins 5041, 5040 and holes 5060, 5061. These holes and pins are used to connect the tray 5023 to connecting hinge plate 5031. Bolts 5042, 5043 extend through holes 5032, 5061 and 5033, 5061 when the hinge is positioned with links (see
Self-aligning high power OSRs overcome the problems of contamination, e.g., dirt in the high power laser beam path, that can occur when adjustments are made, and in particular when adjustments are made in the field. Further, adjustment mechanisms, because they are adjustable, by their nature go out of adjustment over time and with use, which can be problematic in high power regimes. For example, a 20 kW laser beam that moves out of alignment by only a few microns can destroy the entire OSR. Thus, these self-aligning embodiments overcome these problems. (ORCAs also overcome these problems, because the beam is kept contained in the optical fiber through the rotation junction.) By self-aligning it is meant that the optical components are configured in the OSR such that no adjustment mechanisms are necessary after the OSR has been assembled and sealed. Thus, as assembled in the OSR the optical components are aligned to transmit high power laser energy, e.g., 10 kW, 20 kW, 50 kW or more, across the free space of a rotation junction. During use and through multiple revolutions in one direction of rotation and then in the other, and under environment conditions and vibrations, the optical components remain aligned, without the need for adjustment.
Thus, for example, an self aligning OSR may have the following operating parameters of Table I (below) and remain self aligning over that entire range of parameters.
Turning to
Further, thermal lensing affects may be avoided by using materials such as Suprasil.
Turning to
The path of the laser beam through the OSR and the rotation junction is as follows. A fiber connector 620 is optically associated with fiber 682 and is positioned in body 623 of optics assembly 680. A strain relief housing 622 surrounds a portion of the connector 620. The fiber connector 620 launches high power laser beam 690 along a beam path toward non-rotating optic 692. Optic 692 collimates the laser beam and launches the collimated beam 693 across the rotational junction and to the rotating optic 694, which focuses the laser beam 696 into the receiving fiber connector 620a that is in optical tube body 608 of rotating optics assembly 681. Ledges 692 and 695 hold optics 692 and 694 respectively.
To obtain a self-aligning OSR all key tolerances in the system must be analyzed, and optimized, to provide for the laser beam 696 to be targeted in correct location and within a predetermined acceptable limit. These tolerances include, for example, mechanical component manufacturing tolerances, optical component tolerances, worst case NA, worst case thermal effects, worst case vibration effects, and others. These tolerances are then evaluated under a Monte Carlo analysis, and as seen in
In
In
In operation the laser beams are fired and travel along laser beam paths, e.g., 818, 816 that travel through openings, e.g., 815, 817 in the disks. In operation disks 814 and 813 rotate together as the laser beams are fired, when the disks have rotated to a point where the twisting of the fibers is at a predetermined maximum, the outer lasers, e.g., 816, are shut off, and the disks whose fibers are attached to the laser (or other non-rotating component of the system) is rotated in the reverse direction to relieve the stress from twisting. When the reverse rotation is taking place, the other disk can continue to rotate in a forward direction, additionally the center laser beam 817 can continue to be fired. Once the twisting stress has been released, the two disks can then rotate together with all lasers firing.
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Generally the reels that may be used with the rotational junction transmission devices can be for example any reel that has a laser umbilical wound around its axle or central hub so that the umbilical is capable of being unwound, e.g., deployed, from the reel and wound onto the reel, e.g., retrieved. The umbilicals may have lengths of greater than about 0.5 km, about 1 km, about 2 km, about 3 km and greater and may have: a core; a cladding; a coating; a first protective layer; and, a second protective layer as well as other passages and wires. The umbilicals may be capable of transmitting high power laser energy for its length with a power loss of less than about 2 dB/km and more preferably less than about 1 dB/km and still more preferably less than about 0.5 dB/km and yet more preferably about 0.3 dB/km. The outer diameter of the reel when wound is preferably less than about 6 m (meters) to facilitate transporting of the spool by truck.
An embodiment of an OSR incorporated into the hollow axle of a spool has the spool in a configuration that has a hollow central axis, or such an axis is associated with the spool, where the optical power is transmitted to the input end of the optical fiber, e.g., as shown in
A general type of spool embodiment is to use a stationary spool similar to a creel and rotate the distal end of the structure or the laser tool attached to the distal end of the fiber in the structure, as the conveyance structure spools out to keep the conveyance structure and thus the fiber from twisting as it is extracted from the spool. The fiber can be designed to accept a reasonable amount of twist along its length. Using this type of the approach if the conveyance structure, and thus, the fiber could be pre-twisted around the spool then as the conveyance structure and the fiber are extracted from the spool, the conveyance structure straightens out and there is no need for the fiber and in particular its distal end to be rotated as the conveyance structure is paid out. There may be a series of tensioners that can suspend the fiber down the hole, or if the hole is filled with water to extract the debris from the bottom of the hole, then the fiber can be encased in a buoyant casing that will support the weight of the fiber and its casing the entire length of the hole. In the situation where the distal end does not rotate and the fiber is twisted and placed under twisting strain, there will be the further benefit of reducing SBS.
A further illustration of an optical connection for a rotation spool is provided in
A cross sectional view of an embodiment of a rotational junction transmission device used with a spool of coiled tubing 1109 is shown in
The optical rotating coupling assembly 1102 is connected to a hollow precision ground axle 1104 with bearing surfaces 1105, 1106. The laser transmission assemblies 1108 is optically coupled to the hollow axle 1104 by optical rotating coupling assemblies 1102, which permits the laser beam to be transmitted from the laser transmission assemblies 1108 into the hollow axle 1104. The optical rotating coupling assemblies for example may be made up of a QBH connector, a precision collimator, and a rotation stage, for example a Precitec collimator through a Newport rotation stage to another Precitec collimator and to a QBH collimator. To the extent that excessive heat builds up in the optical rotating coupling cooling should be applied to maintain the temperature at a desired level.
The hollow axle 1104 then transmits the laser beam to an opening 1107 in the hollow axle 1104, which opening contains an optical coupler 1110 that optically connects the hollow axle 1104 to the long distance high power laser beam transmission assemblies 1125 that may be located inside of a tubing 1112. Thus, in this way the laser transmission assemblies 1108, the hollow axle 1104 and the long distance high power laser beam transmission assemblies 1125 are rotatably optically connected, so that the laser beam can be transmitted from the laser to the long distance high power laser beam transmission assemblies 1125.
Turning to
Turning to
An embodiment of a rotational junction transmission device to pay out and retrieve, or for extending and retrieving, the umbilical is a stationary spool or creel. As illustrated, by way of example, in
In
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Turing to
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In
In
In
In
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The relative speeds of the revolving arm assembly and the rotating drum can vary as needed, in accordance with the anticipated speed of the deployment reel, the length of the deployment umbilical, the bending capability of the umbilical and the optical fibers, the relative diameters of the drums, and other considerations. However, it should be noted that when the diameter of two drums are the same the revolving arm must be twice as fast as the rotating drum, i.e., when the drum makes one rotation, the arm as revolved around twice.
In
The rotational junction transmission devices, e.g., a rotating coupler, an OSR, an ORCA, a ratchet type optical transmission system, and others may find applications in activities such as: off-shore activities; subsea activities; decommissioning structures such as, oil rigs, oil platforms, offshore platforms, factories, nuclear facilities, nuclear reactors, pipelines, bridges, etc.; cutting and removal of structures in refineries; civil engineering projects and construction and demolitions; concrete repair and removal; mining; surface mining; deep mining; rock and earth removal; surface mining; tunneling; making small diameter bores; oil field perforating; oil field fracking; well completion; window cutting; well decommissioning; well workover; precise and from a distance in-place milling and machining; heat treating; drilling and advancing boreholes; workover and completion; flow assurance; and, combinations and variations of these and other activities and operations.
A single high power laser may be utilized in the system, tools and operations, or there may be two or three high power lasers, or more. High power solid-state lasers, specifically semiconductor lasers and fiber lasers are preferred, because of their short start up time and essentially instant-on capabilities. The high power lasers for example may be fiber lasers, disk lasers or semiconductor lasers having 5 kW, 10 kW, 20 kW, 50 kW, 80 kW or more power and, which emit laser beams with wavelengths in the range from about 455 nm (nanometers) to about 2100 nm, preferably in the range about 400 nm to about 1600 nm, about 400 nm to about 800 nm, 800 nm to about 1600 nm, about 1060 nm to 1080 nm, 1530 nm to 1600 nm, 1800 nm to 2100 nm, and more preferably about 1064 nm, about 1070-1080 nm, about 1360 nm, about 1455 nm, 1490 nm, or about 1550 nm, or about 1900 nm (wavelengths in the range of 1900 nm may be provided by Thulium lasers). An example of this general type of fiber laser is the IPG YLS-20000. The detailed properties of which are disclosed in U.S. patent application Publication No. 2010/0044106. Thus, by way of example, there is contemplated the use of four, five, or six, 20 kW lasers to provide a laser beam having a power greater than about 60 kW, greater than about 70 kW, greater than about 80 kW, greater than about 90 kW and greater than about 100 kW. One laser may also be envisioned to provide these higher laser powers.
The various embodiments of rotational junction transmission devices, e.g., a rotating coupler, an OSR, an ORCA, a ratchet type optical transmission system, and others set forth in this specification may be used with various high power laser systems and conveyance structures and systems, in addition to those embodiments of the Figures and Examples in this specification. For example, embodiments of rotational junction transmission devices, e.g., a rotating coupler, an OSR, an ORCA, a ratchet type optical transmission system, and others may be used for, in, or with, the systems, lasers, tools and methods disclosed and taught in the following US patent applications and patent application publications: Publication No. 2010/0044106; Publication No. 2010/0215326; Publication No. 2012/0275159; Publication No. 2010/0044103; Publication No. 2012/0267168; Publication No. 2012/0020631; Publication No. 2013/0011102; Publication No. 2012/0217018; Publication No. 2012/0217015; Publication No. 2012/0255933; Publication No. 2012/0074110; Publication No. 2012/0068086; Publication No. 2012/0273470; Publication No. 2012/0067643; Publication No. 2012/0266803; Ser. No. 61/745,661; and Ser. No. 61/727,096, the entire disclosure of each of which are incorporated herein by reference.
Embodiments of rotational junction transmission devices, e.g., a rotating coupler, an OSR, an ORCA, a ratchet type optical transmission system, and others may also be used with: other high power laser systems that may be developed in the future; and with existing non-high power laser systems, which may be modified, in-part, based on the teachings of this specification, to create a high power laser system. Further, the various embodiments of devices systems, tools, activities and operations set forth in this specification may be used with each other in different and various combinations. Thus, for example, the configurations provided in the various embodiments of this specification may be used with each other; and the scope of protection afforded the present inventions should not be limited to a particular embodiment, configuration or arrangement that is set forth in a particular embodiment, example, or in an embodiment in a particular Figure.
The invention may be embodied in other forms than those specifically disclosed herein without departing from its spirit or essential characteristics. The described embodiments are to be considered in all respects only as illustrative and not restrictive.
This application: (i) claims, under 35 U.S.C. §119(e)(1), the benefit of the filing date of Mar. 1, 2012 of provisional application Ser. No. 61/605,401; (ii) is a continuation-in-part of U.S. patent application Ser. No. 13/210,581; (iii) is continuation-in-part of U.S. patent application Ser. No. 13/366,882; (iv) is a continuation-in-part of U.S. patent application Ser. No. 12/543,986; and, (iv) is a continuation-in-part of U.S. patent application Ser. No. 12/544,136, which claims under 35 U.S.C. §119(e)(1) the benefit of the filing date of Feb. 17, 2009 of provisional application Ser. No. 61/153,271 and the benefit of the filing date of Oct. 17, 2008 of Provisional Application Ser. No. 61/106,472, the entire disclosures of each of which are incorporated herein by reference.
This invention was made with Government support under Award DE-AR0000044 awarded by the Office of ARPA-E U.S. Department of Energy. The Government has certain rights in this invention.
Number | Name | Date | Kind |
---|---|---|---|
914636 | Case | Mar 1909 | A |
2548463 | Blood | Apr 1951 | A |
2742555 | Murray | Apr 1956 | A |
3122212 | Karlovitz | Feb 1964 | A |
3383491 | Muncheryan | May 1968 | A |
3461964 | Venghiattis | Aug 1969 | A |
3493060 | Van Dyk | Feb 1970 | A |
3503804 | Schneider et al. | Mar 1970 | A |
3539221 | Gladstone | Nov 1970 | A |
3544165 | Snedden | Dec 1970 | A |
3556600 | Shoupp et al. | Jan 1971 | A |
3574357 | Alexandru et al. | Apr 1971 | A |
3586413 | Adams | Jun 1971 | A |
3652447 | Yant | Mar 1972 | A |
3693718 | Stout | Sep 1972 | A |
3699649 | McWilliams | Oct 1972 | A |
3802203 | Ichise et al. | Apr 1974 | A |
3820605 | Barber et al. | Jun 1974 | A |
3821510 | Muncheryan | Jun 1974 | A |
3823788 | Garrison et al. | Jul 1974 | A |
3871485 | Keenan, Jr. | Mar 1975 | A |
3882945 | Keenan, Jr. | May 1975 | A |
3938599 | Horn | Feb 1976 | A |
3960448 | Schmidt et al. | Jun 1976 | A |
3977478 | Shuck | Aug 1976 | A |
3992095 | Jacoby et al. | Nov 1976 | A |
3992096 | Oliveira | Nov 1976 | A |
3998281 | Salisbury et al. | Dec 1976 | A |
4019331 | Rom et al. | Apr 1977 | A |
4025091 | Zeile, Jr. | May 1977 | A |
4026356 | Shuck | May 1977 | A |
4047580 | Yahiro et al. | Sep 1977 | A |
4057118 | Ford | Nov 1977 | A |
4061190 | Bloomfield | Dec 1977 | A |
4066138 | Salisbury et al. | Jan 1978 | A |
4090572 | Welch | May 1978 | A |
4113036 | Stout | Sep 1978 | A |
4125757 | Ross | Nov 1978 | A |
4151393 | Fenneman et al. | Apr 1979 | A |
4162400 | Pitts, Jr. | Jul 1979 | A |
4189705 | Pitts, Jr. | Feb 1980 | A |
4194536 | Stine et al. | Mar 1980 | A |
4199034 | Salisbury et al. | Apr 1980 | A |
4227582 | Price | Oct 1980 | A |
4228856 | Reale | Oct 1980 | A |
4243298 | Kao et al. | Jan 1981 | A |
4249925 | Kawashima et al. | Feb 1981 | A |
4252015 | Harbon et al. | Feb 1981 | A |
4256146 | Genini et al. | Mar 1981 | A |
4266609 | Rom et al. | May 1981 | A |
4280535 | Willis | Jul 1981 | A |
4281891 | Shinohara et al. | Aug 1981 | A |
4282940 | Salisbury et al. | Aug 1981 | A |
4332401 | Stephenson et al. | Jun 1982 | A |
4336415 | Walling | Jun 1982 | A |
4340245 | Stalder | Jul 1982 | A |
4367917 | Gray | Jan 1983 | A |
4370886 | Smith, Jr. et al. | Feb 1983 | A |
4374530 | Walling | Feb 1983 | A |
4375164 | Dodge et al. | Mar 1983 | A |
4389645 | Wharton | Jun 1983 | A |
4415184 | Stephenson et al. | Nov 1983 | A |
4417603 | Argy | Nov 1983 | A |
4436177 | Elliston | Mar 1984 | A |
4444420 | McStravick et al. | Apr 1984 | A |
4453570 | Hutchison | Jun 1984 | A |
4459731 | Hutchison | Jul 1984 | A |
4477106 | Hutchison | Oct 1984 | A |
4504112 | Gould et al. | Mar 1985 | A |
4522464 | Thompson et al. | Jun 1985 | A |
4531552 | Kim | Jul 1985 | A |
4565351 | Conti et al. | Jan 1986 | A |
4662437 | Renfro | May 1987 | A |
4694865 | Tauschmann | Sep 1987 | A |
4707073 | Kocher | Nov 1987 | A |
4725116 | Spencer et al. | Feb 1988 | A |
4741405 | Moeny et al. | May 1988 | A |
4744420 | Patterson et al. | May 1988 | A |
4770493 | Ara et al. | Sep 1988 | A |
4793383 | Gyory et al. | Dec 1988 | A |
4830113 | Geyer | May 1989 | A |
4860654 | Chawla et al. | Aug 1989 | A |
4860655 | Chawla | Aug 1989 | A |
4872520 | Nelson | Oct 1989 | A |
4924870 | Wlodarczyk et al. | May 1990 | A |
4952771 | Wrobel | Aug 1990 | A |
4989236 | Myllymäki | Jan 1991 | A |
4997250 | Ortiz, Jr. | Mar 1991 | A |
5003144 | Lindroth et al. | Mar 1991 | A |
5004166 | Sellar | Apr 1991 | A |
5013311 | Nouri | May 1991 | A |
5033545 | Sudol | Jul 1991 | A |
5049738 | Gergely et al. | Sep 1991 | A |
5054877 | Ortiz, Jr. | Oct 1991 | A |
5065448 | Ortiz, Jr. | Nov 1991 | A |
5084617 | Gergely | Jan 1992 | A |
5086842 | Cholet | Feb 1992 | A |
5093880 | Matsuda et al. | Mar 1992 | A |
5107936 | Foppe | Apr 1992 | A |
5121872 | Legget | Jun 1992 | A |
5125061 | Marlier et al. | Jun 1992 | A |
5125063 | Panuska et al. | Jun 1992 | A |
5128882 | Cooper et al. | Jul 1992 | A |
5136676 | Arnett | Aug 1992 | A |
5140664 | Bosisio et al. | Aug 1992 | A |
5163321 | Perales | Nov 1992 | A |
5168940 | Foppe | Dec 1992 | A |
5172112 | Jennings | Dec 1992 | A |
5182785 | Savegh et al. | Jan 1993 | A |
5212755 | Holmberg | May 1993 | A |
5226107 | Stern et al. | Jul 1993 | A |
5269377 | Martin | Dec 1993 | A |
5285204 | Sas-Jaworsky | Feb 1994 | A |
5309541 | Flint | May 1994 | A |
5319528 | Raven | Jun 1994 | A |
5348097 | Giannesini et al. | Sep 1994 | A |
5351533 | Macadam et al. | Oct 1994 | A |
5353875 | Schultz et al. | Oct 1994 | A |
5355967 | Mueller et al. | Oct 1994 | A |
5356081 | Sellar | Oct 1994 | A |
5396805 | Surjaatmadja | Mar 1995 | A |
5397372 | Partus et al. | Mar 1995 | A |
5411081 | Moore et al. | May 1995 | A |
5411085 | Moore et al. | May 1995 | A |
5411105 | Gray | May 1995 | A |
5413045 | Miszewski | May 1995 | A |
5413170 | Moore | May 1995 | A |
5419188 | Rademaker et al. | May 1995 | A |
5423383 | Pringle | Jun 1995 | A |
5425420 | Pringle | Jun 1995 | A |
5435351 | Head | Jul 1995 | A |
5435395 | Connell | Jul 1995 | A |
5463534 | Raven | Oct 1995 | A |
5463711 | Chu | Oct 1995 | A |
5465793 | Pringle | Nov 1995 | A |
5469878 | Pringle | Nov 1995 | A |
5479860 | Ellis | Jan 1996 | A |
5483988 | Pringle | Jan 1996 | A |
5488992 | Pringle | Feb 1996 | A |
5500768 | Doggett et al. | Mar 1996 | A |
5503014 | Griffith | Apr 1996 | A |
5503370 | Newman et al. | Apr 1996 | A |
5505259 | Wittrisch et al. | Apr 1996 | A |
5515926 | Boychuk | May 1996 | A |
5526887 | Vestavik | Jun 1996 | A |
5561516 | Noble et al. | Oct 1996 | A |
5566764 | Elliston | Oct 1996 | A |
5573225 | Boyle et al. | Nov 1996 | A |
5574815 | Kneeland | Nov 1996 | A |
5577560 | Coronado et al. | Nov 1996 | A |
5586609 | Schuh | Dec 1996 | A |
5599004 | Newman et al. | Feb 1997 | A |
5615052 | Doggett | Mar 1997 | A |
5638904 | Misselbrook et al. | Jun 1997 | A |
5655745 | Morrill | Aug 1997 | A |
5692087 | Partus et al. | Nov 1997 | A |
5694408 | Bott et al. | Dec 1997 | A |
5699974 | Jenkins | Dec 1997 | A |
5699996 | Boyle | Dec 1997 | A |
5707939 | Patel | Jan 1998 | A |
5757484 | Miles et al. | May 1998 | A |
5759859 | Sausa | Jun 1998 | A |
5771984 | Potter et al. | Jun 1998 | A |
5773791 | Kuykendal | Jun 1998 | A |
5794703 | Newman et al. | Aug 1998 | A |
5813465 | Terrell et al. | Sep 1998 | A |
5828003 | Thomeer et al. | Oct 1998 | A |
5832006 | Rice et al. | Nov 1998 | A |
5833003 | Longbottom et al. | Nov 1998 | A |
5847825 | Alexander | Dec 1998 | A |
5862273 | Pelletier | Jan 1999 | A |
5862862 | Terrell | Jan 1999 | A |
5896482 | Blee et al. | Apr 1999 | A |
5896938 | Moeny et al. | Apr 1999 | A |
5902499 | Richerzhagen | May 1999 | A |
5909306 | Goldberg et al. | Jun 1999 | A |
5913337 | Williams et al. | Jun 1999 | A |
5924489 | Hatcher | Jul 1999 | A |
5929986 | Slater et al. | Jul 1999 | A |
5933945 | Thomeer et al. | Aug 1999 | A |
5938954 | Onuma et al. | Aug 1999 | A |
5946788 | Griffioen | Sep 1999 | A |
5950298 | Griffioen | Sep 1999 | A |
5973783 | Goldner et al. | Oct 1999 | A |
5986756 | Slater et al. | Nov 1999 | A |
RE36525 | Pringle | Jan 2000 | E |
6015015 | Luft et al. | Jan 2000 | A |
6038363 | Slater et al. | Mar 2000 | A |
6059037 | Longbottom et al. | May 2000 | A |
6060662 | Rafie et al. | May 2000 | A |
6065540 | Thomeer et al. | May 2000 | A |
RE36723 | Moore et al. | Jun 2000 | E |
6076602 | Gano et al. | Jun 2000 | A |
6092601 | Gano et al. | Jul 2000 | A |
6104022 | Young et al. | Aug 2000 | A |
RE36880 | Pringle | Sep 2000 | E |
6116344 | Longbottom et al. | Sep 2000 | A |
6135206 | Gano et al. | Oct 2000 | A |
6147754 | Theriault et al. | Nov 2000 | A |
6157893 | Berger et al. | Dec 2000 | A |
6166546 | Scheihing et al. | Dec 2000 | A |
6215734 | Moeny et al. | Apr 2001 | B1 |
6227200 | Cunningham et al. | May 2001 | B1 |
6227300 | Cunningham et al. | May 2001 | B1 |
6250391 | Proudfoot | Jun 2001 | B1 |
6273193 | Hermann et al. | Aug 2001 | B1 |
6275645 | Vereecken et al. | Aug 2001 | B1 |
6281489 | Tubel et al. | Aug 2001 | B1 |
6301423 | Olson | Oct 2001 | B1 |
6309195 | Bottos et al. | Oct 2001 | B1 |
6321839 | Vereecken et al. | Nov 2001 | B1 |
6352114 | Toalson et al. | Mar 2002 | B1 |
6354370 | Miller | Mar 2002 | B1 |
6355928 | Skinner et al. | Mar 2002 | B1 |
6356683 | Hu et al. | Mar 2002 | B1 |
6361299 | Quigley | Mar 2002 | B1 |
6377591 | Hollister et al. | Apr 2002 | B1 |
6384738 | Carstensen et al. | May 2002 | B1 |
6386300 | Curlett et al. | May 2002 | B1 |
6401825 | Woodrow | Jun 2002 | B1 |
6409155 | Brown | Jun 2002 | B1 |
6426479 | Bischof | Jul 2002 | B1 |
6437326 | Yamate et al. | Aug 2002 | B1 |
6450257 | Douglas | Sep 2002 | B1 |
6463198 | Coleman et al. | Oct 2002 | B1 |
6494259 | Surjaatmadja | Dec 2002 | B2 |
6497290 | Misselbrook et al. | Dec 2002 | B1 |
6557249 | Pruett et al. | May 2003 | B1 |
6561289 | Portman et al. | May 2003 | B2 |
6564046 | Chateau | May 2003 | B1 |
6591046 | Stottlemyer | Jul 2003 | B2 |
6615922 | Deul et al. | Sep 2003 | B2 |
6626249 | Rosa | Sep 2003 | B2 |
6634388 | Taylor | Oct 2003 | B1 |
6644848 | Clayton et al. | Nov 2003 | B1 |
6661815 | Kozlovsky et al. | Dec 2003 | B1 |
6710720 | Carstensen et al. | Mar 2004 | B2 |
6712150 | Crabtree et al. | Mar 2004 | B1 |
6725924 | Davidson et al. | Apr 2004 | B2 |
6747743 | Skinner et al. | Jun 2004 | B2 |
6755262 | Parker | Jun 2004 | B2 |
6808023 | Smith et al. | Oct 2004 | B2 |
6832654 | Ravensbergen et al. | Dec 2004 | B2 |
6847034 | Shah et al. | Jan 2005 | B2 |
6851488 | Batarseh | Feb 2005 | B2 |
6867858 | Owen et al. | Mar 2005 | B2 |
6870128 | Kobayashi et al. | Mar 2005 | B2 |
6874361 | Meltz et al. | Apr 2005 | B1 |
6880646 | Batarseh | Apr 2005 | B2 |
6885784 | Bohnert | Apr 2005 | B2 |
6888097 | Batarseh | May 2005 | B2 |
6888127 | Jones et al. | May 2005 | B2 |
6912898 | Jones et al. | Jul 2005 | B2 |
6913079 | Tubel | Jul 2005 | B2 |
6920395 | Brown | Jul 2005 | B2 |
6920946 | Oglesby | Jul 2005 | B2 |
6923273 | Terry et al. | Aug 2005 | B2 |
6944380 | Hideo et al. | Sep 2005 | B1 |
6957576 | Skinner et al. | Oct 2005 | B2 |
6967322 | Jones et al. | Nov 2005 | B2 |
6977367 | Tubel et al. | Dec 2005 | B2 |
6978832 | Gardner et al. | Dec 2005 | B2 |
6981561 | Krueger et al. | Jan 2006 | B2 |
6994162 | Robison | Feb 2006 | B2 |
7013993 | Masui | Mar 2006 | B2 |
7015983 | Saccomanno | Mar 2006 | B2 |
7040746 | McCain et al. | May 2006 | B2 |
7055604 | Jee et al. | Jun 2006 | B2 |
7055629 | Oglesby | Jun 2006 | B2 |
7072044 | Kringlebotn et al. | Jul 2006 | B2 |
7072588 | Skinner | Jul 2006 | B2 |
7086484 | Smith, Jr. | Aug 2006 | B2 |
7087865 | Lerner | Aug 2006 | B2 |
7088437 | Blomster et al. | Aug 2006 | B2 |
7099533 | Chenard | Aug 2006 | B1 |
7126332 | Blanz et al. | Oct 2006 | B2 |
7134488 | Tudor et al. | Nov 2006 | B2 |
7134514 | Riel et al. | Nov 2006 | B2 |
7140435 | Defretin et al. | Nov 2006 | B2 |
7147064 | Batarseh et al. | Dec 2006 | B2 |
7152685 | Adnan | Dec 2006 | B2 |
7152700 | Church et al. | Dec 2006 | B2 |
7163875 | Richerzhagen | Jan 2007 | B2 |
7172026 | Misselbrook | Feb 2007 | B2 |
7172038 | Terry et al. | Feb 2007 | B2 |
7174067 | Murshid et al. | Feb 2007 | B2 |
7188687 | Rudd et al. | Mar 2007 | B2 |
7195731 | Jones | Mar 2007 | B2 |
7196786 | DiFoggio | Mar 2007 | B2 |
7199869 | MacDougall | Apr 2007 | B2 |
7201222 | Kanady et al. | Apr 2007 | B2 |
7210343 | Shammai et al. | May 2007 | B2 |
7212283 | Hother et | May 2007 | B2 |
7249633 | Ravensbergen et al. | Jul 2007 | B2 |
7264057 | Rytlewski et al. | Sep 2007 | B2 |
7270195 | MacGregor et al. | Sep 2007 | B2 |
7273108 | Misselbrook | Sep 2007 | B2 |
7310466 | Fink et al. | Dec 2007 | B2 |
7334637 | Smith, Jr. | Feb 2008 | B2 |
7337660 | Ibrahim et al. | Mar 2008 | B2 |
7362422 | DiFoggio et al. | Apr 2008 | B2 |
7372230 | McKay | May 2008 | B2 |
7382949 | Bouma | Jun 2008 | B2 |
7394064 | Marsh | Jul 2008 | B2 |
7395696 | Bissonnette et al. | Jul 2008 | B2 |
7416032 | Moeny et al. | Aug 2008 | B2 |
7416258 | Reed et al. | Aug 2008 | B2 |
7424190 | Dowd et al. | Sep 2008 | B2 |
7471831 | Bearman et al. | Dec 2008 | B2 |
7487834 | Reed et al. | Feb 2009 | B2 |
7490664 | Skinner et al. | Feb 2009 | B2 |
7503404 | McDaniel et al. | Mar 2009 | B2 |
7515782 | Zhang et al. | Apr 2009 | B2 |
7516802 | Smith, Jr. | Apr 2009 | B2 |
7518722 | Julian et al. | Apr 2009 | B2 |
7527108 | Moeny | May 2009 | B2 |
7530406 | Moeny et al. | May 2009 | B2 |
7535628 | Tsuchiya et al. | May 2009 | B2 |
7559378 | Moeny | Jul 2009 | B2 |
7587111 | de Montmorillon et al. | Sep 2009 | B2 |
7600564 | Shampine et al. | Oct 2009 | B2 |
7603011 | Varkey et al. | Oct 2009 | B2 |
7617873 | Lovell et al. | Nov 2009 | B2 |
7624743 | Sarkar et al. | Dec 2009 | B2 |
7628227 | Marsh | Dec 2009 | B2 |
7646953 | Dowd et al. | Jan 2010 | B2 |
7647948 | Quigley et al. | Jan 2010 | B2 |
7671983 | Shammai et al. | Mar 2010 | B2 |
7715664 | Shou et al. | May 2010 | B1 |
7720323 | Yamate et al. | May 2010 | B2 |
7769260 | Hansen et al. | Aug 2010 | B2 |
7773655 | Chuyanov | Aug 2010 | B2 |
7802384 | Kobayashi et al. | Sep 2010 | B2 |
7834777 | Gold | Nov 2010 | B2 |
7845419 | Naumann | Dec 2010 | B2 |
7848368 | Gapontsev et al. | Dec 2010 | B2 |
7900699 | Ramos et al. | Mar 2011 | B2 |
7938175 | Skinner et al. | May 2011 | B2 |
8011454 | Castillo | Sep 2011 | B2 |
8062986 | Khrapko et al. | Nov 2011 | B2 |
8074332 | Keatch et al. | Dec 2011 | B2 |
8082996 | Kocis et al. | Dec 2011 | B2 |
8091638 | Dusterhoft et al. | Jan 2012 | B2 |
8109345 | Jeffryes | Feb 2012 | B2 |
8118282 | Griffioen | Feb 2012 | B2 |
8175433 | Caldwell et al. | May 2012 | B2 |
8307900 | Lynde | Nov 2012 | B2 |
8385705 | Overton et al. | Feb 2013 | B2 |
8424617 | Faircloth | Apr 2013 | B2 |
8432945 | Faybishenko | Apr 2013 | B2 |
8464794 | Schultz | Jun 2013 | B2 |
8511401 | Zediker | Aug 2013 | B2 |
8522869 | Noya | Sep 2013 | B2 |
8528643 | Schultz | Sep 2013 | B2 |
8534357 | Schultz | Sep 2013 | B2 |
8540026 | Schultz | Sep 2013 | B2 |
8627901 | Underwood | Jan 2014 | B1 |
8662160 | DeWitt | Mar 2014 | B2 |
8711894 | Chuyanov | Apr 2014 | B2 |
20020007945 | Neuroth et al. | Jan 2002 | A1 |
20020028287 | Kawada et al. | Mar 2002 | A1 |
20020039465 | Skinner | Apr 2002 | A1 |
20020189806 | Davidson et al. | Dec 2002 | A1 |
20030000741 | Rosa | Jan 2003 | A1 |
20030025842 | Saccomanno | Feb 2003 | A1 |
20030053783 | Shirasaki | Mar 2003 | A1 |
20030056990 | Oglesby | Mar 2003 | A1 |
20030085040 | Hemphill et al. | May 2003 | A1 |
20030094281 | Tubel | May 2003 | A1 |
20030132029 | Parker | Jul 2003 | A1 |
20030145991 | Olsen | Aug 2003 | A1 |
20030159283 | White | Aug 2003 | A1 |
20030160164 | Jones et al. | Aug 2003 | A1 |
20030226826 | Kobayashi et al. | Dec 2003 | A1 |
20040006429 | Brown | Jan 2004 | A1 |
20040016295 | Skinner et al. | Jan 2004 | A1 |
20040020643 | Thomeer et al. | Feb 2004 | A1 |
20040026127 | Masui | Feb 2004 | A1 |
20040026382 | Richerzhagen | Feb 2004 | A1 |
20040033017 | Kringlebotn et al. | Feb 2004 | A1 |
20040074979 | McGuire | Apr 2004 | A1 |
20040093950 | Bohnert | May 2004 | A1 |
20040096614 | Quigley | May 2004 | A1 |
20040112642 | Krueger et al. | Jun 2004 | A1 |
20040119471 | Blanz et al. | Jun 2004 | A1 |
20040129418 | Jee et al. | Jul 2004 | A1 |
20040195003 | Batarseh | Oct 2004 | A1 |
20040200341 | Walters | Oct 2004 | A1 |
20040206505 | Batarseh | Oct 2004 | A1 |
20040207731 | Bearman et al. | Oct 2004 | A1 |
20040211894 | Hother et al. | Oct 2004 | A1 |
20040218176 | Shammal et al. | Nov 2004 | A1 |
20040244970 | Smith, Jr. | Dec 2004 | A1 |
20040252748 | Gleitman | Dec 2004 | A1 |
20040256103 | Batarseh | Dec 2004 | A1 |
20050007583 | DiFoggio | Jan 2005 | A1 |
20050012244 | Jones | Jan 2005 | A1 |
20050016730 | McMechan | Jan 2005 | A1 |
20050024716 | Nilsson et al. | Feb 2005 | A1 |
20050034857 | Defretin et al. | Feb 2005 | A1 |
20050094129 | MacDougall | May 2005 | A1 |
20050099618 | DiFoggio et al. | May 2005 | A1 |
20050115741 | Terry et al. | Jun 2005 | A1 |
20050121094 | Quigley | Jun 2005 | A1 |
20050121235 | Larsen et al. | Jun 2005 | A1 |
20050189146 | Oglesby | Sep 2005 | A1 |
20050201652 | Ellwood, Jr. | Sep 2005 | A1 |
20050230107 | McDaniel et al. | Oct 2005 | A1 |
20050252286 | Ibrahim et al. | Nov 2005 | A1 |
20050263281 | Lovell et al. | Dec 2005 | A1 |
20050268704 | Bissonnette et al. | Dec 2005 | A1 |
20050269132 | Batarseh et al. | Dec 2005 | A1 |
20050272512 | Bissonnette et al. | Dec 2005 | A1 |
20050272513 | Bissonnette et al. | Dec 2005 | A1 |
20050272514 | Bissonnette et al. | Dec 2005 | A1 |
20050279511 | Adnan | Dec 2005 | A1 |
20050282645 | Bissonnette et al. | Dec 2005 | A1 |
20060005579 | Jacobsen et al. | Jan 2006 | A1 |
20060038997 | Julian et al. | Feb 2006 | A1 |
20060049345 | Rao et al. | Mar 2006 | A1 |
20060065815 | Jurca | Mar 2006 | A1 |
20060070770 | Marsh | Apr 2006 | A1 |
20060102343 | Skinner et al. | May 2006 | A1 |
20060118303 | Schultz et al. | Jun 2006 | A1 |
20060137875 | Dusterhoft et al. | Jun 2006 | A1 |
20060173148 | Sasaki et al. | Aug 2006 | A1 |
20060185843 | Smith, Jr. | Aug 2006 | A1 |
20060191684 | Smith, Jr. | Aug 2006 | A1 |
20060204188 | Clarkson et al. | Sep 2006 | A1 |
20060207799 | Yu | Sep 2006 | A1 |
20060231257 | Reed et al. | Oct 2006 | A1 |
20060237233 | Reed et al. | Oct 2006 | A1 |
20060257150 | Tsuchiya et al. | Nov 2006 | A1 |
20060260832 | McKay | Nov 2006 | A1 |
20060266522 | Eoff et al. | Nov 2006 | A1 |
20060283592 | Sierra et al. | Dec 2006 | A1 |
20060289724 | Skinner et al. | Dec 2006 | A1 |
20070034409 | Dale et al. | Feb 2007 | A1 |
20070081157 | Csutak et al. | Apr 2007 | A1 |
20070125163 | Dria et al. | Jun 2007 | A1 |
20070153847 | Faircloth | Jul 2007 | A1 |
20070171556 | Faircloth | Jul 2007 | A1 |
20070193990 | Richerzhagen et al. | Aug 2007 | A1 |
20070217736 | Zhang et al. | Sep 2007 | A1 |
20070227741 | Lovell et al. | Oct 2007 | A1 |
20070242265 | Vessereau et al. | Oct 2007 | A1 |
20070247701 | Akasaka et al. | Oct 2007 | A1 |
20070267220 | Magiawala et al. | Nov 2007 | A1 |
20070278195 | Richerzhagen et al. | Dec 2007 | A1 |
20070280615 | de Montmorillon et al. | Dec 2007 | A1 |
20080023202 | Keatch et al. | Jan 2008 | A1 |
20080053702 | Smith, Jr. | Mar 2008 | A1 |
20080073077 | Tunc et al. | Mar 2008 | A1 |
20080093125 | Potter et al. | Apr 2008 | A1 |
20080112760 | Curlett | May 2008 | A1 |
20080128123 | Gold | Jun 2008 | A1 |
20080135818 | Griffioen | Jun 2008 | A1 |
20080138022 | Tassone | Jun 2008 | A1 |
20080165356 | DiFoggio et al. | Jul 2008 | A1 |
20080166132 | Lynde et al. | Jul 2008 | A1 |
20080180787 | DiGiovanni et al. | Jul 2008 | A1 |
20080245568 | Jeffryes | Oct 2008 | A1 |
20080273852 | Parker et al. | Nov 2008 | A1 |
20090020333 | Marsh | Jan 2009 | A1 |
20090029842 | Khrapko et al. | Jan 2009 | A1 |
20090031870 | O'Connor | Feb 2009 | A1 |
20090033176 | Huang et al. | Feb 2009 | A1 |
20090049345 | Mock et al. | Feb 2009 | A1 |
20090050371 | Moeny | Feb 2009 | A1 |
20090078467 | Castillo | Mar 2009 | A1 |
20090105955 | Castillo et al. | Apr 2009 | A1 |
20090126235 | Kobayashi et al. | May 2009 | A1 |
20090133871 | Skinner et al. | May 2009 | A1 |
20090133929 | Rodland | May 2009 | A1 |
20090139768 | Castillo | Jun 2009 | A1 |
20090166042 | Skinner | Jul 2009 | A1 |
20090190887 | Freeland et al. | Jul 2009 | A1 |
20090194292 | Oglesby | Aug 2009 | A1 |
20090205675 | Sarkar et al. | Aug 2009 | A1 |
20090225793 | Marciante | Sep 2009 | A1 |
20090260834 | Henson et al. | Oct 2009 | A1 |
20090266552 | Barra et al. | Oct 2009 | A1 |
20090266562 | Greenaway | Oct 2009 | A1 |
20090272424 | Ortabasi | Nov 2009 | A1 |
20090272547 | Dale et al. | Nov 2009 | A1 |
20090279835 | de Montmorillon et al. | Nov 2009 | A1 |
20090294050 | Traggis et al. | Dec 2009 | A1 |
20090308852 | Alpay et al. | Dec 2009 | A1 |
20090324183 | Bringuier et al. | Dec 2009 | A1 |
20100000790 | Moeny | Jan 2010 | A1 |
20100001179 | Kobayashi et al. | Jan 2010 | A1 |
20100008631 | Herbst | Jan 2010 | A1 |
20100013663 | Cavender et al. | Jan 2010 | A1 |
20100018703 | Lovell et al. | Jan 2010 | A1 |
20100025032 | Smith et al. | Feb 2010 | A1 |
20100032207 | Potter et al. | Feb 2010 | A1 |
20100044102 | Rinzler | Feb 2010 | A1 |
20100044103 | Moxley | Feb 2010 | A1 |
20100044104 | Zediker | Feb 2010 | A1 |
20100044105 | Faircloth | Feb 2010 | A1 |
20100044106 | Zediker | Feb 2010 | A1 |
20100071794 | Homan | Mar 2010 | A1 |
20100078414 | Perry et al. | Apr 2010 | A1 |
20100084132 | Noya et al. | Apr 2010 | A1 |
20100089571 | Revellat et al. | Apr 2010 | A1 |
20100089574 | Wideman et al. | Apr 2010 | A1 |
20100089576 | Wideman et al. | Apr 2010 | A1 |
20100089577 | Wideman et al. | Apr 2010 | A1 |
20100096124 | Naumann | Apr 2010 | A1 |
20100111474 | Satake | May 2010 | A1 |
20100114190 | Bendett et al. | May 2010 | A1 |
20100155059 | Ullah | Jun 2010 | A1 |
20100158457 | Drozd et al. | Jun 2010 | A1 |
20100158459 | Homa | Jun 2010 | A1 |
20100170672 | Schwoebel et al. | Jul 2010 | A1 |
20100170680 | McGregor et al. | Jul 2010 | A1 |
20100187010 | Abbasi et al. | Jul 2010 | A1 |
20100197116 | Shah et al. | Aug 2010 | A1 |
20100212769 | Quigley | Aug 2010 | A1 |
20100215326 | Zediker | Aug 2010 | A1 |
20100218993 | Wideman et al. | Sep 2010 | A1 |
20100224408 | Kocis et al. | Sep 2010 | A1 |
20100226135 | Chen | Sep 2010 | A1 |
20100236785 | Collis et al. | Sep 2010 | A1 |
20100260454 | Mills | Oct 2010 | A1 |
20100290781 | Overton et al. | Nov 2010 | A1 |
20100326659 | Schultz et al. | Dec 2010 | A1 |
20100326665 | Redlinger et al. | Dec 2010 | A1 |
20110030957 | Constantz et al. | Feb 2011 | A1 |
20110035154 | Kendall et al. | Feb 2011 | A1 |
20110048743 | Stafford et al. | Mar 2011 | A1 |
20110061869 | Abass et al. | Mar 2011 | A1 |
20110079437 | Hopkins et al. | Apr 2011 | A1 |
20110085149 | Nathan | Apr 2011 | A1 |
20110122644 | Okuno | May 2011 | A1 |
20110127028 | Strickland | Jun 2011 | A1 |
20110139450 | Vasques et al. | Jun 2011 | A1 |
20110147013 | Kilgore | Jun 2011 | A1 |
20110162854 | Bailey et al. | Jul 2011 | A1 |
20110168443 | Smolka | Jul 2011 | A1 |
20110170563 | Heebner et al. | Jul 2011 | A1 |
20110174537 | Potter et al. | Jul 2011 | A1 |
20110186298 | Clark et al. | Aug 2011 | A1 |
20110198075 | Okada et al. | Aug 2011 | A1 |
20110205652 | Abbasi et al. | Aug 2011 | A1 |
20110220409 | Foppe | Sep 2011 | A1 |
20110240314 | Greenaway | Oct 2011 | A1 |
20110266062 | Shuman, V et al. | Nov 2011 | A1 |
20110278070 | Hopkins et al. | Nov 2011 | A1 |
20110290563 | Kocis et al. | Dec 2011 | A1 |
20110303460 | Von Rohr et al. | Dec 2011 | A1 |
20120000646 | Liotta et al. | Jan 2012 | A1 |
20120012392 | Kumar | Jan 2012 | A1 |
20120012393 | Kumar | Jan 2012 | A1 |
20120020631 | Rinzler et al. | Jan 2012 | A1 |
20120048550 | Dusterhoft et al. | Mar 2012 | A1 |
20120048568 | Li et al. | Mar 2012 | A1 |
20120061091 | Radi | Mar 2012 | A1 |
20120067643 | DeWitt et al. | Mar 2012 | A1 |
20120068086 | DeWitt et al. | Mar 2012 | A1 |
20120068523 | Bowles | Mar 2012 | A1 |
20120074110 | Zediker et al. | Mar 2012 | A1 |
20120081893 | Faybishenko | Apr 2012 | A1 |
20120103693 | Jeffryes | May 2012 | A1 |
20120111578 | Tverlid | May 2012 | A1 |
20120118568 | Kleefisch et al. | May 2012 | A1 |
20120118578 | Skinner | May 2012 | A1 |
20120155813 | Quigley | Jun 2012 | A1 |
20120189258 | Overton et al. | Jul 2012 | A1 |
20120217015 | Zediker et al. | Aug 2012 | A1 |
20120217017 | Zediker et al. | Aug 2012 | A1 |
20120217018 | Zediker et al. | Aug 2012 | A1 |
20120217019 | Zediker et al. | Aug 2012 | A1 |
20120239013 | Islam | Sep 2012 | A1 |
20120248078 | Zediker et al. | Oct 2012 | A1 |
20120255774 | Grubb et al. | Oct 2012 | A1 |
20120255933 | McKay et al. | Oct 2012 | A1 |
20120255993 | Bandholz | Oct 2012 | A1 |
20120259013 | Motwani | Oct 2012 | A1 |
20120261188 | Zediker et al. | Oct 2012 | A1 |
20120266803 | Zediker et al. | Oct 2012 | A1 |
20120267168 | Grubb et al. | Oct 2012 | A1 |
20120273269 | Rinzler et al. | Nov 2012 | A1 |
20120273470 | Zediker et al. | Nov 2012 | A1 |
20120275159 | Fraze et al. | Nov 2012 | A1 |
20130011102 | Rinzler | Jan 2013 | A1 |
20130175090 | Zediker | Jul 2013 | A1 |
20130192893 | Zediker | Aug 2013 | A1 |
20130192894 | Zediker | Aug 2013 | A1 |
20130220626 | Zediker | Aug 2013 | A1 |
20130228372 | Linyaev | Sep 2013 | A1 |
20130228557 | Zediker | Sep 2013 | A1 |
20130266031 | Norton | Oct 2013 | A1 |
20130319984 | Linyaev | Dec 2013 | A1 |
20140000902 | Wolfe | Jan 2014 | A1 |
20140060802 | Zediker | Mar 2014 | A1 |
20140060930 | Zediker | Mar 2014 | A1 |
20140069896 | Deutch | Mar 2014 | A1 |
20140090846 | Deutch | Apr 2014 | A1 |
20140190949 | Zediker | Jul 2014 | A1 |
20140231085 | Zediker | Aug 2014 | A1 |
20140231398 | Land | Aug 2014 | A1 |
20140248025 | Rinzler | Sep 2014 | A1 |
20140345872 | Zediker | Nov 2014 | A1 |
Number | Date | Country |
---|---|---|
0 295 045 | Dec 1988 | EP |
0295 045 | Dec 1988 | EP |
0 515 983 | Dec 1992 | EP |
0515983 | Dec 1992 | EP |
0 565 287 | Oct 1993 | EP |
0 950 170 | Sep 2002 | EP |
2 716 924 | Sep 1995 | FR |
2 716 924 | Sep 1995 | FR |
1 284 454 | Aug 1972 | GB |
2420358 | May 2006 | GB |
1987-011804 | Jan 1987 | JP |
1993-118185 | May 1993 | JP |
1993-33574 | Sep 1993 | JP |
09072738 | Mar 1997 | JP |
09-242453 | Sep 1997 | JP |
2000-334590 | Dec 2000 | JP |
2001-208924 | Aug 2001 | JP |
2003-239673 | Aug 2003 | JP |
2004-108132 | Apr 2004 | JP |
2004-108132 | Apr 2004 | JP |
2006-039147 | Feb 2006 | JP |
2006-509253 | Mar 2006 | JP |
2006-307481 | Nov 2006 | JP |
2007-120048 | May 2007 | JP |
2008-242012 | Oct 2008 | JP |
WO 9532834 | Dec 1995 | WO |
WO 9749893 | Dec 1997 | WO |
WO 9850673 | Nov 1998 | WO |
WO 9856534 | Dec 1998 | WO |
WO 02057805 | Jul 2002 | WO |
WO 03027433 | Apr 2003 | WO |
WO 03050286 | Jul 2003 | WO |
WO 03060286 | Jul 2003 | WO |
WO 2004009958 | Jan 2004 | WO |
WO2004052078 | Jun 2004 | WO |
WO 2004094786 | Nov 2004 | WO |
WO 2005001232 | Jan 2005 | WO |
WO 2005001239 | Jan 2005 | WO |
WO 2006008155 | Jan 2006 | WO |
WO 2006041565 | Apr 2006 | WO |
WO 2006054079 | May 2006 | WO |
WO 2007002064 | Jan 2007 | WO |
WO 2007112387 | Oct 2007 | WO |
WO 2007135485 | Nov 2007 | WO |
WO 2007136485 | Nov 2007 | WO |
WO 2008016852 | Feb 2008 | WO |
WO 2008070509 | Jun 2008 | WO |
WO 2008085675 | Jul 2008 | WO |
WO 2009042774 | Apr 2009 | WO |
WO 2009042781 | Apr 2009 | WO |
WO 2009042785 | Apr 2009 | WO |
WO 2009131584 | Oct 2009 | WO |
WO 2010036318 | Apr 2010 | WO |
WO 2010060177 | Jun 2010 | WO |
WO 2010037944 | Aug 2010 | WO |
WO 2010087944 | Aug 2010 | WO |
WO 2011008544 | Jan 2011 | WO |
WO 2011032083 | Mar 2011 | WO |
WO 2011041390 | Apr 2011 | WO |
WO 2011075247 | Jun 2011 | WO |
WO 2011106078 | Sep 2011 | WO |
WO 2012003146 | Jan 2012 | WO |
WO 2012012006 | Jan 2012 | WO |
WO 2012027699 | Mar 2012 | WO |
WO 2012064356 | May 2012 | WO |
WO 2012116189 | Aug 2012 | WO |
Entry |
---|
International Search Report for related application case No. PCT/US2012/049338, dated Jan. 22, 2013, 14 pgs. |
International Search Report for PCT Application No. PCT/US2011/044548, dated Jan. 24. 2012, 17 pgs. |
International Search Report for PCT Application No. PCT/US2011/047902, dated Jan. 17, 2012, 9 pgs. |
International Search Report for PCT Application No. PCT/US2011/050044, dated Feb. 1, 2012, 26 pgs. |
International Search Report for PCT Application No. PCT/US2012/026277, dated May 30, 2012, 11 pgs. |
International Search Report for PCT Application No. PCT/US2012/026265, dated May 30, 2012,14 pgs. |
U.S. Appl. No. 13/486,795, filed Jun. 1, 2012, Rinzler et al. |
U.S. Appl. No. 13/565,345, filed Aug. 2, 2012, Zediker et al. |
International Search Report for PCT Application No. PCT/US2012/026280, dated May 30, 2012, 12 pgs. |
International Search Report for PCT Application No. PCT/US2012/026471, dated May 30, 2012, 13 pgs. |
International Search Report for PCT Application No. PCT/US2012/026525, dated May 31, 2012, 8 pgs. |
International Search Report for PCT Application No. PCT/US2012/026526, dated May 31, 2012, 10 pgs. |
International Search Report for PCT Application No. PCT/US20/026494, dated May 31, 2012, 12 pgs. |
International Search Report for PCT Application No. PCT/US2012/026337, dated Jun. 7, 2012, 21 pgs. |
International Search Report for PCT Application No. PCT/US2012/020789, dated Jun. 29, 2012, 9 pgs. |
International Search Report for PCT Application No. PCT/US2012/040490, dated Oct. 22, 2012, 14 pgs. |
Labuz, J. F. et al., “Experiments with Rock: Remarks on Strength and Stability Issues”, International Journal of Rock Mechanics & Mining Science, vol. 44, 2007, pp. 525-537. |
Labuz, J. F. et al., “Size Effects in Fracture of Rock”, Rock Mechanics for Industry, Amadei, Kranz, Scott & Smeallie (eds), 1999, pp. 1137-1143. |
Langeveld, C. J., “PDC Bit Dynamics”, a paper prepared for presentation at the 1992 IADC/SPE Drilling Conference, Feb. 1992, pp. 227-241. |
Lee, S. H. et al., “Themo-Poroelastic Analysis of Injection-Induced Rock Deformation and Damage Evolution”, Proceedings Thirty-Fifth Workshop on Geothermal Reservoir Engineering, Feb. 2010, 9 pages. |
Lee, Y. W. et al., “High-Power Yb3+ Doped Phosphate Fiber Amplifier”, IEEE Journal of Selected Topics in Quantum Electronics, vol. 15, No. 1, Jan./Feb. 2009, pp. 93-102. |
Legarth, B. et al., “Hydraulic Fracturing in a Sedimentary Geothermal Reservoir: Results and Implications”, International Journal of Rock Mechanics & Mining Sciences, vol. 42 , 2005, pp. 1028-1041. |
Lehnhoff, T. F. et al., “The Influence of Temperature Dependent Properties on Thermal Rock Fragmentation”, Int. J. Rock Mech. Min, Sci. & Geomech. Abstr., vol. 12, 1975, pp. 255-260. |
Leong, K. H., “Modeling Laser Beam-Rock Interaction”, a report prepared for US Department of Energy (http://www.doe.gov/bridge), while publication date is unknown, it is believed to be prior to Jul. 21, 2010, 8 pages including pp. 1-6. |
Li, Q. et al., “Experimental Research on Crack Propagation and Failure in Rock-type Materials under Compression”, EJGE, vol. 13, Bund. D, 2008, p. 1-13. |
Li, X. B. et al., “Experimental Investigation in the Breakage of Hard Rock by the PDC Cutters with Combined Action Modes”, Tunnelling and Underground Space Technology, vol. 16. 2001, pp. 107-114. |
Liddle, D. et al., “ Cross Sector Decommissioning Workshop”, presentation, Mar. 23, 2011, 14 pages. |
Lindholm, U. S. et al., “The Dynamic Strength and Fracture Properties of Dresser Basalt”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 11, 1974, pp. 181-191. |
Loland, K. E., “Continuous Damage Model for Load-Response Estimation of Concrete”, Cement and Concrete Research, vol. 10, 1980, pp. 395-402. |
Lorenzana, H. E. et al., “Metastability of Molecular Phases of Nitrogen: Implications to the Phase Diagram”, a manuscript submitted to the European Hight Pressure Research Group 39 Conference, Advances on High Pressure, Sep. 21, 2001, 18 pages. |
Lubarda, V. A. et al., “Damage Model for Brittle Elastic Solids with Unequal Tensile and Compressive Strengths”, Engineering Fracture Mechanics, vol. 29, No. 5, 1994, pp. 681-692. |
Lucia, F. J. et al., “Characterization of Diagenetically Altered Carbonate Reservoirs, South Cowden Grayburg Reservoir, West Texas”, a paper prepared for presentation at the 1996 SPE Annual Technical Conference and Exhibition, Oct. 1996, pp. 883-893. |
Luffel, D. L. et al., “Travis Peak Core Permeability and Porosity Relationships at Reservoir Stress”, SPE Formation Evaluation, Sep. 1991, pp. 310-318. |
Luft, H. B. et al., “Development and Operation of a New Insulated Concentric Coiled Tubing String for Continuous Steam Injection in Heavy Oil Production”, Conference Paper published by Society of Petroleum Engineers on the Internet at: (http://www.onepetro.org/mslib/servlet/onepetropreview?id=00030322), on Aug. 8, 2012, 1 page. |
Lund, M. et al., “Specific Ion Binding to Macromolecules: Effect of Hydrophobicity and Ion Pairing”, Langmuir, 2008 vol. 24, 2008, pp. 3387-3391. |
Manrique, E. J. et al., “EOR Field Experiences in Carbonate Reservoirs in the United States”, SPE Reservoir Evaluation & Engineering, Dec. 2007, pp. 667-686. |
Maqsood, A. et al., “Thermophysical Properties of Porous Sandstones: Measurement and Comparative Study of Some Representative Thermal Conductivity Models”, International Journal of Thermophysics, vol. 26, No. 5, Sep. 2005. pp. 1617-1632. |
Marcuse, D., “Curvature Loss Formula for Optical Fibers”, J. Opt. Soc. Am., vol. 66, No. 3, 1976, pp. 216-220. |
Martin, C. D., “Seventeenth Canadian Geotechnical Colloquium: The Effect of Cohesion Loss and Stress Path on Brittle Rock Strength”, Canadian Geotechnical Journal, vol. 34, 1997, pp. 698-725. |
Martins, A. et al., “Modeling of Bend Losses in Single-Mode Optical Fibers”, Institutu de Telecomunicacoes, Portugal, while the date of publication is unknown, it is believed to be prior to Aug. 19, 2009, 3 pages. |
Maurer, W. C. et al., “Laboratory Testing of High-Pressure, High-Speed PDC Bits”, a paper prepared for presentation at the 61st Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, Oct. 1986, pp. 1-8. |
McKenna, T. E. et al., “Thermal Conductivity of Wilcox and Frio Sandstones in South Texas (Gulf of Mexico Basin)”, AAPG Bulletin, vol. 80, No. 8, Aug. 1996, pp. 1203-1215. |
Meister, S. et al., “Glass Fibers for Stimulated Brillouin Scattering and Phase Conjugation”, Laser and Particle Beams, vol. 25. 2007, pp. 15-21. |
Mejia-Rodriguez, G. et al., “Multi-Scale Material Modeling of Fracture and Crack Propagation”, Final Project Report in Multi-Scale Methods in Applied Mathematics, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, pp. 1-9. |
Mensa-Wilmot, G. et al., “New PDC Bit Technology, Improved Drillability Analysis, and Operational Practices Improve Drilling Performance in Hard and Highly Heterogeneous Applications”, a paper prepared for the 2004 SPE (Society of Petroleum Engineers) Eastern Regional Meeting, Sep. 2004, pp. 1-14. |
Messica, A. et al., “Theory of Fiber-Optic Evanescent-Wave Spectroscopy and Sensor”, Applied Optics, vol. 35, No. 13, May 1, 1996, pp. 2274-2284. |
Mills, W. R. et al., “Pulsed Neutron Porosity Logging”, SPWLA Twenty-Ninth Annual Logging Symposium, Jun. 1988, pp. 1-21. |
Mirkovich, V. V., “Experimental Study Relating Thermal Conductivity to Thermal Piercing of Rocks”, Int. J. Rock Mech. Min. Sci., vol. 5, 1968, pp. 205-218. |
Mittelstaedt, E. et al., “A Noninvasive Method for Measuring the Velocity of Diffuse Hydrothermal Row by Tracking Moving Refractive Index Anomalies”, Geochemistry Geophysics Geosystems, vol. 11, No. 10, Oct. 8, 2010, pp. 1-18. |
Moavenzadeh, F. et al., “Thin Disk Technique for Analyzing Fock Fractures Induced by Laser Irradiation”, a report prepared for the US Department of Transportation under Contract C-85-65, May 1968, 91 pages. |
Montross, C. S. et al., “Laser-Induced Shock Wave Generation and Shock Wave Enhancement in Basalt”, International Journal of Rock Mechanics and Mining Sciences, 1999, pp. 849-855. |
Morozumi, V. et al., “Growth and Structures of Surface Disturbances of a Round Liquid Jet in a Coaxial Airflow”, Fluid Dynamics Research, vol. 34, 2004, pp. 217-231. |
Morse, J. W. et al., “Experimental and Analytic Studies to Model Reaction Kinetics and Mass Transport of Carbon Dioxide Sequestration in Depleted Carbonate Reservoirs”, a Final Scientific/Technical Report for DOE, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 158 pages. |
Moshier, S. O., “Microporosity in Micritic Limestones: A Review”, Sedimentary Geology, vol. 63, 1989, pp. 191-213. |
Mostafa, M. S. et al., “Investigation of Thermal Properties of Some Basalt Samples in Egypt”, Journal of Thermal Analysis and Calorimetry, vol. 75, 2004, pp. 178-188. |
Mukhin, I. B. et al., “Experimental Study of Kilowatt-Average-Power Faraday Isolators”, OSA/ASSP, 2007, 3 pages. |
Multari, R. A. et al., “Effect of Sampling Geometry on Eiemental Emissions in Laser-Induced Breakdown Spectroscopy”, Applied Spectroscopy, vol. 50, No. 12, 1996, pp. 1483-1499. |
Munro, R. G., “Effective Medium Theory of the Porosity Dependence of Bulk Moduli”, Communications of American Ceramic Society, vol. 84, No. 5, 2001, pp. 1190-1192. |
Murphy, H. D., “Thermal Stress Cracking and Enhancement of Heat Extraction from Fractured Geothermal Reservoirs”, a paper submitted to the Geothermal Resource Council for its 1978 Annual Meeting, Jul. 1978, 7 pages. |
Murrell, S. A. F. et al., “The Effect of Temperature on the Strength at High Confining Pressure of Granodiorite Containing Free and Chemically-Bound Water”, Mineralogy and Petrology, vol. 55, 1976, pp. 317-330. |
Myung, I. J., “Tutorial on Maximum Likelihood Estimation”, Journal of Mathematical Psychology, vol. 47, 2003, pp. 90-100. |
Nakano, A. et al., “Visualization for Heat and Mass Transport Phenomena in Supercritical Artificial Air”, Cryogenics, vol. 45, 2005, pp. 557-565. |
Nara, Y. et al., “Study of Subcritical Crack Growth in Andesite Using the Double Torsion Test”, International Journal of Rock Mechanics & Mining Sciences, vol. 42, 2005, pp. 521-530. |
Nicklaus, K. et al., “Optical Isolator for Unpolarized Laser Radiation at Multi-Kilowatt Average Power”, Optical Society of America, 2005, 3 pages. |
Nikles, M. et al., “Brillouin Gain Spectrum Characterization in Single-Mode Optical Fibers”, Journal of Lightwave Technology, vol. 15, No. 10, Oct. 1997, pp. 1842-1851. |
Nilsen, B. et al., “Recent Developments in Site Investigation and Testing for Hard Rock TBM Projects”, 1999 RETC Proceedings, 1999, pp. 715-731. |
Nimick, F. B., “Empirical Relationships Between Porosity and the Mechanical Properties of Tuff”, Key Questions in Rock Mechanics, Cundall et al, (eds), 1988, pp. 741-742. |
Nolen-Hoeksema, R., “Fracture Development and Mechnical Stratigraphy of Austin Chalk, Texas: Discussion”, a discussion for The American Association of Petroleum Geologists Bulletin, vol. 73, No. 6, Jun. 1989, pp. 792-793. |
Oglesby, K. et al., “Advanced Ultra High Speed Motor for Drilling”, a project update by Impact Technologies LLC for the US Department of Energy, Sep. 12, 2005, 36 pages. |
Olsen, F. O., “Fundamental Mechanisms of Cutting Front Formation in Laser Cutting”, SPIE, vol. 2207, while publication date is unknown, it is believed to be prior to Jul. 21, 2010, pp. 402-413. |
Ouyang, L. B. et al., “General Single Phase Wellbore Flow Model”, a report prepared for the US COE/PETC, May 2, 1997, 51 pages. |
Palchaev, D. K. et al., “Thermal Expansion of Silicon Carbide Materials”, Journal of Engineering Physics and Thermophysics, vol. 66, No. 6, 1994, 3 pages. |
Parker, R. et al., “Drilling Large Diameter Holes in Rocks Using Multiple Laser Beams (504)”, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 6 pages. |
Patricio, M. et al., “Crack Propagation Analysis”, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 24 pages. |
Peebler, R. P. et al., “Formation Evaluation with Logs in the Deep Anadarko Basin”, SPE of AIME, 1972, 15 pages. |
Pepper, D. W. et al., “Benchmarking COMSOL Multiphysics 3.5a—CFD Problems”, a presentation, Oct. 10, 2009, 54 pages. |
Pettitt, R. et al., “Evolution of a Hybrid Roller Cone/PDC Core Bit”, a paper prepared for Geothermal Resources Council 1980 Annual Meeting, Sep. 1980, 7 pages. |
Phani, K. K. et al., “Porosity Dependence of Ultrasonic Velocity and Elastic Modulus in Sintered Uranium Dioxide—a discussion”, Journal of Materials Science Letters, vol. 5, 1986, pp. 427-430. |
Plinninger, R. J. et al., “Wear Prediction in Hardrock Excavation Using the CERCHAR Abrasiveness Index (CAI)”, EUROCK 2004 & 53rd Geomechanics Colloquium, 2004, 6 pages. |
Plumb, R. A. et al., “Influence of Composition and Texture on Compressive Strength Variations in the Travis Peak Formation”, a paper prepared for presentation at the 67th Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, Oct. 1992, pp. 985-998. |
Pooniwala, S. et al., “Lasers: The Next Bit”, a paper prepared for the presentation at the 2006 SPE (Society of Petroleum Engineers) Eastern Regional Meeting, Oct. 2006, pp. 1-10. |
Porter, J. A. et al., “Cutting Thin Sheet Metal with a Water Jet Guided Laser Using Various Cutting Distances, Feed Speeds and Angles of Incidence”, Int. J. Adv. Manuf. Technol., vol. 33, 2007, pp. 961-967. |
Potyondy, D., “Internal Technical Memorandum—Molecular Dynamics with PFC”, a Technical Memorandum to PFC Development Files and Itasca Website, Molecular Dynamics with PFC, Jan. 6, 2010, 35 pages. |
Potyondy, D. O., “Simulating Stress Corrosion with a Bonded-Particle Model for Rock”, International Journal of Rock Mechanics & Mining Sciences, vol. 44, 2007, pp. 677-691. |
Powell, M. et al., “Optimization of UHP Waterjet Cutting Head, The Orifice”, Flow International, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 19 pages. |
Price, R. H., et al., “Analysis of the Elastic and Strength Properties of Yuccs Mountain tuff, Nevada”, 26th US Symposium on Rock Mechanics, Jun. 1985, pp. 89-96. |
Quinn, R. D. et al., “A Method for Calculating Transient Surface Temperatures and Surface Heating Rates for High-Speed Aircraft”, NASA, Dec. 2000, 35 pages. |
Ramadan, K. et al., “On the Analysis of Short-Pulse Laser Heating of Metals Using the Dual Phase Lag Heat Conduction Model”, Journal of Heat Transfer, vol. 131, Nov. 2009, pp. 111301-1 to 111301-7. |
Rao, M. V. M. S. et al., “A Study of Progressive Failure of Rock Under Cyclic Loading by Ultrasonic and AE Monitoring Techniques”, Rock Mechanics and Rock Engineering, vol. 25, No. 4, 1992, pp. 237-251. |
Rauerizahn, R. M., “Analysis of Rock Mechanics and Gas Dynamics of Flame-Jet Thermal Spallation Drilling”, a dissertation for the degree of Doctor of Philosophy at Massachusettes Institute of Technology, Sep. 1986, pp. 1-524. |
Rauenzahn, R. M. et al., “Rock Failure Mechanisms of Flame-Jet Thermal Spallation Drilling—Theory and Experimental Testing”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 26, No. 5, 1989, pp. 381-399. |
Ravishankar, M. K., “Some Results on Search Complexity vs Accuracy”, DARPA Spoken Systems Technology Workshop, Feb. 1997, 4 pages. |
Ream, S. et al., “Zinc Sulfide Optics for High Power Laser Applications”, Paper 1609, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 7 pages. |
Rice, J. R., “On the Stability of Dilatant Hardening for Saturated Rock Masses”, Journal of Geophysical Research, vol. 80, No. 11, Apr. 10, 1975, pp. 1531-1536. |
Richter, D. et al., “Thermal Expansion Behavior of Igneous Rocks”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 11, 1974, pp. 403-411. |
Rietman, N. D. et al., “Comparative Economics of Deep Drilling in Anadarka Basin”, a paper presented at the 1979 Society of Petroleum Engineers of AIME Deep Drilling and Production Symposium, Apr. 1979, 5 pages. |
Rijken, P. et al., “Predicting Fracture Attributes in the Travis Peak Formation Using Quantitative Mechanical Modeling and Stractural Diagenesis”, Gulf Coast Association of Geological Societies Transactions vol. 52, 2002, pp. 837-847. |
Rjken, P. et al., “Role of Shale Thickness on Vertical Connectivity of Fractures: Application of Crack-Bridging Theory to the Austin Chalk, Texas”, Tectonophysics, vol. 337, 2001, pp. 117-133. |
Author unknown, by RIO Technical Services, “Sub-Task 1: Current Capabilities of Hydraulic Motors, Air/Nitrogen Motors, and Electric Downhole Motors”, a final report for Department of Energy National Petroleum Technology Office for the Contract Task 03NT30429, Jan. 30, 2004, 26 pages. |
Rosler, M., “Generalized Hermite Polynomials and the Heat Equation for Dunkl Operators”, a paper, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, pp. 1-24. |
Rossmanith, H. P. et al., “Fracture Mechanics Applications to Drilling and Blasting”, Fatigue & Fracture Engineering Materials & Structures, vol. 20, No. 11, 1997, pp. 1617-1636. |
Rubin, A. M. et al., “Dynamic Tensile-Failure-Induced Velocity Deficits in Rock”, Geophysical Research Letters, vol. 18, No. 2, Feb. 1991, pp. 219-222. |
Salehi, I. A. et al., “Laser Drilling—Drilling with the Power Light”, a final report a contract with DOE with award No. DE-FC26-00NT40917, May 2007, in parts 1-4 totaling 318 pages. |
Sandler, I. S. et al., “An Algorithm and a Modular Subroutine for the Cap Model”, International Journal for Numerical and Analytical Methods in Geomechanics, vol. 3, 1979, pp. 173-186. |
Santarelli, F. J. et al., “Formation Evaluation From Logging on Cuttings”, SPE Reservoir Evaluation & Engineering, Jun. 1998, pp. 238-244. |
Sattler, A. R., “Core Analysis in a Low Permeability Sandstone Reservoir: Results from the Multiwell Experiment”, a report by Sandia National Laboratories for The US Department of Energy, Apr. 1989, 69 pages. |
Scaggs, M. et al., “Thermal Lensing Compensation Objective for High Power Lasers”, published by Haas Lasers Technologies, Inc., while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 7 pages. |
Schaff, D. P. et al., “Waveform Cross-Correlation-Based Differential Travel-Time Measurements at the Northern California Seismic Network”, Bulletin of the Seismological Society of America, vol. 95, No. 6, Dec. 2005, pp. 2446-2461. |
Schaffer, C. B. et al., “Dynamics of Femtosecond Laser-Induced Breakdown in Water from Femtoseconds to Microseconds”, Optics Express, vol. 10, No. 3, Feb. 11, 2002, pp. 196-203. |
Scholz, C. H., “Microfracturing of Rock in Compression”, a dissertation for the degree of Doctor of Philosophy at Massachusettes Instutute of Trechnology, Sep. 1967, 177 pages. |
Schroeder, R. J. et al., “High Pressure and Temperature Sensing for the Oil Industry Using Fiber Bragg Gratings Written onto Side Hole Single Mode Fiber”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 4 pages. |
Shiraki, K. et al., “SBS Threshold of a Fiber with a Brillouin Frequency Shift Distribution”, Journal of Lightwave Technology, vol. 14, No. 1, Jan. 1996, pp. 50-57. |
Singh, T. N. et al., “Prediction of Thermal Conductivity of Rock Through Physico-Mechanical Properties”, Building and Environment, vol. 42, 2007, pp. 146-155. |
Sinha, D., “Cantilever Drilling—Ushering a New Genre of Drilling”, a paper prepared for presentation at the SPE/IADC Middle East Drilling Technology Conference and Exhibition, Oct. 2003, 6 pages. |
Sinor, A. et al., “Drag Bit Wear Model”, SPE Drilling Engineering, Jun. 1989, pp. 128-136. |
Smith, D., “Using Coupling Variables to Solve Compressible Flow, Muitiphase Flow and Plasma Processing Problems”, COMSOL Users Conference 2006, Nov. 1, 2006, 38 pages. |
Sneider, RM et al., “Rock Types, Depositional History, and Diangenetic Effects, Ivishak reservoir Prudhoe Bay Field”, SPE Reservoir Engineering, Feb. 1997, pp. 23-30. |
Soedler, D. J. et al., “Pore Geometry in High- and Low-Permeability Sandstones. Travis Peak Formation, East Texas”, SPE Formation Evaluation, Dec. 1990, pp. 421-430. |
Somerton, W. H. et al., “Thermal Expansion of Fluid Saturated Rocks Under Stress”, SPWLA Twenty-Second Annual Logging Symposium, Jun. 1981, pp. 1-8. |
Sousa, L. M. O. et al., “Influence of Microfractures and Porosity on the Physico-Mechanical Properties and Weathering of Ornamental Granites”, Engineering Geology, vol. 77, 2005, pp. 153-168. |
Stowell, J. F. W., “Characterization of Opening-Mode Fracture Systems in the Austin Chalk”, Gulf Coast Association of Geological Societies Transactions, vol. L1 , 2001, pp. 313-320. |
Straka, W. A. et al., “Cavitation Inception in Quiescent and Co-Flow Nozzle Jets”, 9th International Conference on Hydrodynamics, Oct. 2010, pp. 813-819. |
Suarez, M. G. et al., “COMSOL in a New Tensorial Formulation of Non-Isothermal Poroelasticity”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009,2 pages. |
Summers, D. A., “Water Jet Cutting Related to Jet & Rock Properties”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 13 pages. |
Suwarno, et al., “Dielectric Properties of Mixtures Between Mineral Oil and Natural Ester from Palm Oil”, WSEAS Transactions on Power Systems, vol. 3, Issue 2, Feb. 2008, pp. 37-46. |
Tang, C. A. et al., “Numerical Studies of the Influence of Microstructure on Rock Failure in Uniaxial Compression—Park I: Effect of Heterogeneity”, International Journal of Rock Mechanics and Mining Sciences, vol. 37, 2000, pp. 555-569. |
Tao, Q. et al., “A Chemo-Poro-Thermoelastic Model for Stress/Pore Pressure Analysis around a Wellbore in Shale”, a paper prepared for presentation at the US Symposium on Rock Mechanics (USRMS): Rock Mechanics for Energy, Mineral and Infrastracture Development in the Northern Regions, Jun. 2005, 7 pages. |
Terra, O. et al., “Brillouin Amplification in Phase Coherent Transfer of Optical Frequencies over 480 km Fiber”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 9 pages. |
Terzopoulos, D. et al., “Modeling Inelastic Deformation: Viscoelasticity, Plasticity, Fracture”, SIGGRAPH '88, Aug. 1988, pp. 269-278. |
Thomas, R. P., “Heat Flow Mapping at the Geysers Geothermal Field”, published by the California Department of Conservation Division of Oil and Gas, 1986, 56 pages. |
Thompson, G. D., “Effects of Formation Compressive Strength on Perforator Performance”, a paper presented of the Southern District API Division of Production, Mar. 1962, pp. 191-197. |
Tovo, R. et al., “Fatigue Damage Evaluation on Mechanical Components Under Multiaxial Loadings”, excerpt from the Proceedings of the COMSOL Conference, 2009, 8 pages. |
Tuler, F. R. et al., “A Criterion for the Time Dependence of Dynamic Fracture”, “The International Journal of Fracture Mechanics”, vol. 4, No. 4, Dec. 1968, pp. 431-437. |
Turner, D. et al., “New DC Motor for Downhole Drilling and Pumping Applications”, a paper prepared for presentation at the SPE/ICoTA Coiled Tubing Roundtable, Mar. 2001, pp. 1-7. |
Turner, D. R. et al., “The All Electric BHA: Recent Developments Toward an intelligent Coiled-Tubing Drilling System”, a paper prepared for presentation at the 1999 SPE/ICoTA Coiled Tubing Roundtable. May 1999, pp. 1-10. |
Tutuncu, A. N. et al., “An Experimental Investigation of Factors Influencing Compressional- and Shear-Wave Velocities and Attenuations in Tight Gas Sandstones”, Geophysics, vol. 59, No. 1, Jan. 1994, pp. 77-86. |
Udd, E. et al., “Fiber Optic Distributed Sensing Systems for Harsh Aerospace Environments”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 12 pages. |
Valsangkar, A. J. et al., “Stress-Strain Relationship for Empirical Equations of Creep in Rocks”, Engineering Geology, Mar. 29, 1971, 5 pages. |
Wagh, A. S. et al., “Dependence of Ceramic Fracture Properties on Porosity”, Journal of Material Sience, vol. 28, 1993, pp. 3589-3593. |
Wagner, F. et al., “The Laser Microjet Technology—10 Years of Development (M401)”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 9 pages. |
Waldron, K. et al., “The Microstructures of Perthitic Alkali Feldspars Revealed by Hydroflouric Acid Etching”, Contributions to Mineralogy and Petrology, vol. 116, 1994, pp. 360-364. |
Walker, B. H. et al., “Roller-Bit Penetration Rate Response as a Function of Rock Properties and Well Depth”, A paper prepared for presentation at the 61st Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, Oct. 1986, 12 pages. |
Wandera, C. et al., “Characterization of the Melt Removal Rate in Laser Cutting of Thick-Section Stainless Steel”, Journal of Laser Applications, vol. 22, No. 2, May 2010, pp. 62-70. |
Wandera, C. et al., “Inert Gas Cutting of Thick-Section Stainless Steel and Medium Section Aluminun Using a High Power Fiber Laser”, Journal of Chemical Physics, vol. 116, No. 4, Jan. 22, 2002, pp. 154-161. |
Wandera, C. et al., “Laser Power Requirement for Cutting of Thick-Section Steel and Effects of Processing Parameters on Mild Steel Gut Quality”, a paper accepted for publication in the Proceedings IMechE Part B, Journal of Engineering Manufacture, vol. 225, 2011, 23 pages. |
Wandera, C. et al., “Optimization of Parameters for Fiber Laser Cutting of 10mm Stainiess Steel Plate”, a paper for publication in the Proceeding IMechE Part B, Journal of Engineering Manufacture, vol. 225, 2011, 22 pages. |
Wandera, C., “Performance of High Power Fibre Laser Cutting of Thick-Section Steel and Medium-Section Aluminium”, a thesis for the degree of Doctor of Science (Technology) at , Lappeenranta University of Technology, Oct. 2010, 74 pages. |
Wang, C. H., “Introduction to Fractures Mechanics”, published by DSTO Aeronautical and Maritime Research Laboratory, Jul. 1996, 82 pages. |
Wang, G. et al., “Particle Modeling Simulation of Thermal Effects on Ore Breakage”, Computational Materials Science, vol. 43, 2008, pp. 892-901. |
Waples, D. W. et al., “A Review and Evaluation of Specific Heat Capacities of Rocks, Minerals, and Subsurface Fluids. Part 1: Minerals and Nonporous Rocks”, Natural Resources Research, vol. 13. No. 2, Jun. 2004, pp. 97-122. |
Waples, D. W. et al., “A Review and Evaluation of Specific Heat Capacities of Rocks, Minerals, and Subsurface Fluids. Part 2: Fluids and Porous Rocks”, Natural Resources Research, vol. 13 No. 2, Jun. 2004, pp. 123-130. |
Warren, T. M. et al., “Laboratory Drilling Performance of PDC Bits”, SPE Drilling Engineering, Jun. 1988, pp. 125-135. |
White, E. J. et al., “Reservoir Rock Characteristics of the Madison Limestone in the Williston Basin”, The Log Analyst, Sep.-Oct. 1970, pp. 17-25. |
White, E. J. et al., “Rock Matrix Properties of the Ratcliffe Interval (Madison Limestone) Flat Lake Field, Montana”, SPE of AIME, Jun. 1968, 16 pages. |
Wilkinson, M. A. et al., “Experimental Measurement of Surface Temperatures During Flame-Jet Induced Thermal Spallation”, Rock Mechanics and Rock Engineering, 1993, pp. 29-62. |
Winters, W. J. et al., “Roller Bit Model with Rock Ductility and Cone Offset”, a paper prepared for presentation at 62nd Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, Sep. 1987, 12 pages. |
Wippich, M. et al., “Tunable Lasers and Fiber-Bragg-Grating Sensors”, Obatined from the at: from the Internet website of The Industrial Physicist at: http://www.aip.org/tip/INPHFA/vol-9/iss-3/p24.html, on May 18, 2010, pp. 1-5. |
Wu, X. Y. et al., “The Effects of Thermal Softening and Heat Conductin on the Dynamic Growth of Voids”, International Journal of Solids and Structures, vol. 40, 2003, pp. 4461-4478. |
Xiao, J. Q. et al., “Inverted S-Shaped Model for Nonlinear Fatigue Damage of Rock”, International Journal of Rock Mechanics & Mining Sciences, vol. 46, 2009, pp. 643-648. |
Xu, Z. et al., “Application of High Powered Lasers to Perforated Completions”, International Congress on Applications of Laser & Electro-Optics, Oct. 2003, 6 pages. |
Xu, Z. et al., “Laser Rock Drilling by a Super-Pulsed CO2 Laser Beam”, a manuscript created for the US Department of Energy, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 9 pages. |
Xu, Z. et al., “Laser Spallation of Rocks for Oil Well Drilling”, Proceedings of the 23rd International Congress on Appiications of Lasers and Electro-Optics, 2004, pp. 1-6. |
Xu, Z. et al., “Modeling of Laser Spallation Drilling of Rocks for Gas-and Oilwell Drilling”, a paper prepared for the presentation at the 2005 SPE (Society of Petroleum Engineers) Annual Technical Conference and Exhibition, Oct. 2005, 6 pages. |
Xu, Z. et al., “Rock Perforation by Pulsed Nd: YAG Laser”, Proceedings of the 23rd International Congress on Applications of Lasers and Electro-Optics 2004, 2004, 5 pages. |
Xu, Z. et al., “Specific Energy for Pulsed Laser Rock Drilling”, Journal of Laser Applications, vol. 15, No. 1, Feb. 2003, pp. 25-30. |
Yabe, T. et al., “The Constrained Interpolation Profile Method for Multiphase Analysis”, Journal of Computational Physics, vol. 169, 2001 , pp. 556-593. |
Yamamoto, K. Y. et al., “Detection of Metals in the Environment Using a Portable Laser-Induced Breakdown Spectroscopy Instrument”, Applied Spectroscopy, vol. 50, No. 2, 1996, pp. 222-233. |
Yamashita, Y. et al., “Underwater Laser Welding by 4kW CW YAG Laser”, Journal of Nuclear Science and Technology, vol. 38, No. 10, Oct. 2001, pp. 891-895. |
Yasar, E. et al., “Determination of the Thermal Conductivity from Physico-Mechanical Properties”, Bull Eng. Geol. Environ., vol. 67, 2008, pp. 219-225. |
York, J. L. et al., “The Influence of Flashing and Cavitation on Spray Formation”, a progress report for UMRI Project 2815 with Delavan Manufacturing Company, Oct. 1959, 27 pages. |
Zamora, M. et al., “An Empirical Relationship Between Thermal Conductivity and Elastic Wave Velocities in Sandstone”, Geophysical Research Letters, vol. 20, No. 16, Aug. 20, 1993, pp. 1679-1682. |
Zeng, Z. W. et al., “Experimental Determination of Geomechanical and Petrophysical Properties of Jackfork Sandstone—A Tight Gas Formation”, a paper prepared for the presentation at the 6th North American Rock Mechanics Symposium (NARMS): Rock Mechanics Across Borders and Disciplines, Jun. 2004, 9 pages. |
Zehnder, A. T., “Lecture Notes on Fracture Mechanics”, 2007, 227 pages. |
Zeuch, D. H. et al., “Rock Breakage Mechanisms With a PDC Cutter”, a paper prepared presentation at the 60th Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, Sep. 1985, 12 pages. |
Zhang, L. et al., “Energy from Abandoned Oil and Gas Reservoirs”, a paper prepared for presentation at the 2008 SPE (Society of Petroleum Engineers) Asia Pacific Oil & Gas Conference and Exhibition, 2008, pp. 1-10. |
Zheleznov, D. S. et al., “Faraday Rotators With Short Magneto-Optical Eiements for 50-kW Laser Power”, IEEE Journal of Quantum Electronics, vol. 43, No. 6, Jun. 2007, pp. 451-457. |
Zhou, T. et al., “Analysis of Stimulated Briilouin Scattering in Multi-Mode Fiber by Numerical Solution”, Journal of Zhejiang University of Science, vol. 4 No. 3, May-Jun. 2003, pp. 254-257. |
Zhu, X, et al., “High-Power ZBLAN Glass Fiber Lasers: Review and Prospect”, Advance in OptoElectronics, vol. 2010, pp. 1-23. |
Zietz, J. et al., “Determinants of House Prices: A Quantile Regression Approach”, Department of Economics and Finance Working Paper Series, May 2007, 27 pages. |
Zuckerman, N. et al., “Jet Impingement Heat Transfer: Physics, Correlations, and Numerical Modeling”, Advances in Heat Transfer, vol. 39, 2006, pp. 565-631. |
Aptukov, V. N., “Two Stages of Spallation”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 6 pages. |
Author known, “Heat Capacity Analysis”, published by Bechtel SAIC Company LLC, a report prepared for US Department of Energy, Nov. 2004, 100 pages. |
Author unknown, “Chapter 7: Energy Conversion Systems—Options and Issues”, publisher ubknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, pp. 7-1 to 7-32 and table of contents page. |
Author unknown , “Chapter I—Laser-Assisted Rock-Cutting Tests”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 64 pages. |
Author unknown, “Cross Process Innovations”, Obtained from the Internat at: http://www.md.columbia.edu/ntm/CrossProcess/CrossProcessSect5.htm, on Feb. 2, 2010, 11 pages. |
Author unknown, “Fourier Series, Generalized Functions, Laplace Transform”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 6 pages. |
Author unknown, “Silicone Fluids: Stable, Inert Media”, published by Gelest, Inc., while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 27 pages. |
Author unknown, “Introduction to Optical Liquids”, Cargille-Sacher Laboratories Inc., Obtained from the Internet at: http://www.cargille.com/opticalintro.shtml, on Dec. 23, 2008, 5 pages. |
Author unknown, “Laser Drilling”, Oil & Natural Gas Projects (Exploration & Production Technologies) Technical Paper, Dept. of Energy, Jul. 2007, 3 pages. |
Author unknown, “Leaders in Industry Luncheon”, IPAA & TIPRO, Jul. 8, 2009, 19 pages. |
Author unknown, “Measurement and Control of Abrasive Water-Jet Velocity”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 8 pages. |
Author unknown, “Nonhomogeneous PDE—Heat Equation with a Forcing Term”, a lecture, 2010, 6 pages. |
Author unknown, “Performance Indicators for Geothermal Power Plants”, prepared by International Geothermal Association for World Energy Council Working Group on Performance of Renewable Energy Plants, author unknown, Mar. 2011, 7 pages. |
Author unknown, “Rock Mechanics and Rock Engineering”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 69 pages. |
Author unknown, “Shock Tube Solved With Cosmol Multiphysics 3.5a”, published by Comsol Multiphysics, 2008, 5 pages. |
Author unknown, “Stimulated Brillouin Scattering (SBS) in Optical Fibers”, published by Centro de Pesquisa em Optica e Fotonica, Obtained from the Internet at: http://cepof.ifi.unicamp.br/index.php . . . ), on Jun. 25, 2012, 2 pages. |
Author unknown, “Underwater Laser Cutting”, published by TWI Ltd, May/Jun. 2011, 2 pages. |
Related utility application assigned U.S. Appl. No. 13/486,795, filed Jun. 1, 2012, 166 pages. |
Related utility application assigned U.S. Appl. No. 13/565,345, filed Aug. 2, 2012, 112 pages. |
Abdulagatova, Z. et al., “Effect of Temperature and Pressure on the Thermal Conductivity of Sandstone”, International Journal of Rock Mechanics & Mining Sciences, vol. 46, 2009, pp. 1055-1071. |
Abousleiman, Y. et al., “Poroelastic Solution of an Inclined Borehole in a Transversely Isotropic Medium”, Rock Mechanics, Daemen & Schultz (eds), 1995, pp. 313-318. |
Ackay, H. et al., Paper titled “Orthonormal Basis Functions for Continuous-Time Systems and Lp Convergence”, date unknown but prior to Aug. 19, 2009, pp. 1-12. |
Acosta, A. et al., paper from X Brazilian MRS meeting titled “Drilling Granite With Laser Light”, X Encontro da SBPMat Granado-RS, Sep. 2011, 4 pages including pp. 56 and 59. |
Ahmadi, M. et al., “The Effect of Interaction Time and Saturation of Rock on Specific Energy in ND:YAG Laser Perforating”, Optics and Laser Technology, vol. 43, 2011, pp. 226-231. |
Akhatov, I. et al., “Collapse and Rebound of a Laser-Induced Cavitation Bubble”, Physics of Fluids, vol. 13, No. 10, Oct. 2001, pp. 2805-2819. |
Albertson, M. L. et al., “Diffusion of Submerged Jets”, a paper for the American Society of Civil Engineers, Nov. 6, 1852, pp. 1571-1596. |
Al-Harthi, A. A. et al., “The Porosity and Engineering Properties of Vesicular Basalt in Saudi Arabia”, Engineering Geology, vol. 54, 1999, pp. 313-320. |
Anand, U. et al., “Prevention of Nozzle Wear in Abrasive Water Suspension Jets (AWSJ) Using Porous Lubricated Nozzles”, Transactions of the ASME, vol. 125, Jan. 2003, pp. 168-181. |
Andersson, J. C. et al., “The Aspo Pillar Stability Experiment: Part II—Rock Mass Response to Coupled Excavation-Induced and Thermal-Induced Stresses”, International Journal of Rock Mechanics & Mining Sciences, vol. 46, 2009, pp. 879-895. |
Anovitz, L. M. et al., “A New Approach to Quantification of Metamorphism Using Ultra-Small and Small Angle Neutron Scattering”, Geochimica et Cosmochimica Acta, vol. 73, 2009, pp. 7303-7324. |
Antonucci, V. et al., “Numerical and Experimental Study of a Concentrated Indentation Force on Polymer Matrix Composites”, an excerpt from the Proceedings of the COMSOL Conference, 2009, 4 pages. |
Author unknown, “Standard Test Method for Thermal Conductivity of Solids by Means of the Guarded-Comparative-Longitudinal Heat flow Technique, Standard under the fixed Designation E1225-09, ”, published by ASTM International, 2009, pp. 1-9. |
Atkinson, B. K., “Introduction to Fracture Mechanics and Its Geophysical Applications”, Fracture Mechanics of Rock, 1987, pp. 1-26. |
Aubertin, M. et al., “A Multiaxial Stress Criterion for Short- and Long-Term Strength of Isotropic Rock Media”, International Journal of Rock Mechanics & Mining Sciences, vol. 37, 2000, pp. 1169-1193. |
Avar, B. B. et al., “Porosity Dependence of the Elastic Modulus of Lithophysae-rich Tuff: Numerical and Experimental Investigations”, International Journal of Rock Mechanics & Mining Sciences, vol. 40, 2003, pp. 919-928. |
Backers, T. et al., “Tensile Fracture Propagation and Acoustic Emission Activity in Sandstone: The Effect of Loading Rate”, International Journal of Rock Mechanics & Mining Sciences, vol. 42, 2005, pp. 1094-1101. |
Baek, S. Y. et al., “Simulation of the Coupled Thermal/Optical Effects for Liquid Immersion Micro-/Nanolithography”, source unknown, believed to be publically available prior to 2012, 13 pages. |
Bagatur, T. et al., “Air-entrainment Characteristics in a Plunging Water Jet System Using Rectangular Nozzles with Rounded Ends”, Water SA, vol. 29, No. 1, Jan. 2003, pp. 35-38. |
Baird, J. A. et al., “Analyzing the Dynamic Behavior of Downhole Equipment During Drilling”, US government Sandia Report, SAND-84-0758C, DE84 008840, believed to be publically available prior to Jul. 2010, 7 pages. |
Batarseh, S. I. et al, “Innovation in Wellbore Perforation Using High-Power Laser”, International Petroleum Technology Conference, IPTC No. 10981. Nov. 2005, 7 pages. |
Batarseh, S. et al., “Well Perforation Using High-Power Lasers”, a paper prepared for presentation at the SPE (Society of Petroleum Engineers) Annual Technical Conference and Exhibition, SPE No. 84418, Oct. 2003, 10 pages. |
Baykasoglu, A. et al., “Prediction of Compressive and Tensile Strength of Limestone via Genetic Programming”, Expert Systems with Applications, vol. 35, 2008, pp. 111-123. |
Belushi, F. et al., “Demonstration of the Power of Inter-Disciplinary Integration to Beat Field Development Challenges in Complex Brown Field-South Oman”, Society of Petroleum Engineers, a paper prepared for presentation at the Abu Dhabi International Petroleum Exhibition & Conference, SPE No. 137154, Nov. 2010, 18 pages. |
Belyaev, V. V., “Spall Damage Modelling and Dynamic Fracture Specificities of Ceramics”, Journal of Materials Processing Technology, vol. 32, 1992, pp. 135-144. |
Benavente, D. et al., “The Combined Influence of Mineralogical, Hygric and Thermal Properties on the Durability of Porous Building Stones”, Eur. J. Mineral, vol. 20, Aug. 2008, pp. 673-685. |
Bieniawski, Z. T., “Mechanism of Brittle Fracture of Rock: Part I—Theory of the Fracture Process”, Int. J. Rock Mech. Min. Sci., vol. 4, 1967, pp. 395-406. |
Bilotsky, Y. et al., “Modelling Multilayers Systems with Time-Depended Heaviside and New Transition Functions”, excerpt from the Proceedings of the 2006 Nordic COMSOL Conference, 2006, 4 pages. |
Birkholzer, J. T. et al., “The Impact of Fracture—Matrix Interaction on Thermal—Hydrological Conditions in Heated Fractured Rock”, an origial research paper published online http://vzy.scjoumals.org/cgi/content/full/5/2/657, May 26, 2006, 27 pages. |
Blackwell, D. D. et al., “Geothermal Resources in Sedimentary Basins”, a presentation for the Geothermal Energy Generation in Oil and Gas Settings, Mar. 13, 2006, 28 pages. |
Blair, S. C. et al., “Analysis of Compressive Fracture in Rock Using Statistical Techniques: Part I. A Non-linear Rule-based Model”, Int. J. Rock Mech. Min. Sci., vol. 35 No. 7, 1998, pp. 837-848. |
Blomqvist, M. et al., “All-in-Quartz Optics for Low Focal Shifts”, SPIE Photonics West Conference in San Francisco, Jan. 2011, 12 pages. |
Boechat, A. A. P. et al., “Bend Loss in Large Core Multimode Optical Fiber Beam Delivery Systems”, Applied Optics., vol. 30 No. 3. Jan. 20, 1991, pp. 321-327. |
Bolme, C. A., “Ultrafast Dynamic Ellipsometry of Laser Driven Shock Waves”, a dissertation for the degree of Doctor of Philosophy in Physical Chemistry at Massachusetts Institute of Technology, Sep. 2008, pp. 1-229. |
Brown, G., “Development, Testing and Track Record of Fiber-Optic, Wet-Mate, Connectors”, IEEE, 2003, pp. 83-88. |
Brujan, E. A. et al., “Dynamics of Laser-Induced Cavitation Bubbles Near an Elastic Bounder”, J. Fluid Mech., vol. 433, 2001, pp. 251-281. |
Burdine, N. T., “Rock Failure Under Dynamic Loading Conditions”, Society of Petroleum Engineers Journal, Mar. 1963, pp. 1-8. |
Bybee, K., “Modeling Laser-Spallation Rock Drilling”, JPT, an SPE available at www.spe.org/jpt. Feb. 2006, 2 pp. 62-63. |
Bybee, Karen, highlight of “Drilling a Hole in Granite Submerged in Water by Use of CO2 Laser”, an SPE availabie at www.spe.org/jpt, JPT, Feb. 2010, pp. 48, 50 and 51. |
Cai, W. et al., “Strength of Glass from Hertzian Line Contact”, Optomechanics 2011: Innovations and Solutions, 2011, 5 pages. |
Capetta, I. S. et al., “Fatigue Damage Evaluation on Mechanical Components Under Multiaxial Loadings”, European Comsol Conference, University of Ferrara, Oct. 16, 2009, 25 pages. |
Carstens, J. P. et al., “Rock Cutting by Laser”, a paper of Society of Petroleum Engineers of AIME, 1971, 11 pages. |
Caruso, C. et al., “Dynamic Crack Propagation in Fiber Reinforced Composites”, Excerpt from the Proceedings of the COMSOL Conference, 2009, 5 pages. |
Chastain, T. et al., “Deepwater Drilling Riser System”, SPE Drilling Engineering, Aug. 1986, pp. 325-328. |
Chen, H. Y. et al., “Characterization of the Austin Chalk Producing Trend”, SPE, a paper prepared for presentation at the 61st Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, SPE No. 15533, Oct. 1986, pp. 1-12. |
Chen, K., paper titled “Analysis of Oil Film Interferometry Implementation in Non-ideal Conditions”, source unknown, Jan. 7, 2010, pp. 1-18. |
Chraplyvy, A. R., “Limitations on Lightwave Communications Imposed by Optical-Fiber Nonlinearities”, Journal of Lightwave Technology, vol. 8 No. 10, Oct. 1990, pp. 1548-1557. |
Churcher, P. L. et al., “Rock Properties of Berea Sandstone, Baker Dolomite, and Indiana Limestone”, a paper prepared for presentation at the SPE International Symposium on Oilfield Chemistry), SPE, SPE No. 21044, Feb. 1991, pp. 431-446 and 3 additional pages. |
Cimetiere, A. et al., “A Damage Model for Concrete Beams in Compression”, Mechanics Research Communications, vol. 34, 2007, pp. 91-96. |
Close, F. et al., “Successfui Drilling of Basalt in a West of Shetland Deepwater Discovery”, a paper prepared for presentation at Offshore Europe 2005 by SPE (Society of Petroleum Engineers) Program Committee, SPE No. 96575, Sep. 2005, pp. 1-10. |
Cohen, J. H., “High-Power Slim-Hole Drilling System”, a paper presented at the conference entitled Natural Gas RD&D Contractor's Review Meeting, Office of Scientific and Technical Information, Apr. 1995, 10 pages. |
Cone, C., “Case History of the University Block 9 (Wolfcamp) Field—Gas-Water Injection Secondary Recovery Project”, Journal of Petroleum Technology, Dec. 1970, pp. 1485-1491. |
Contreras, E. et al., “Effects of Temperature and Stress on the Compressibilities, Thermal Expansivities, and Porosities of Cerro Prieto and Berea Sandstones to 9000 PSI and 208 degrees Celsius”, Proceedings Eighth Workshop Geothermal Reservoir Engineering, Leland Stanford Junior University, Dec. 1982, pp. 197-203. |
Cooper, R., “Coiled Tubing Deployed ESPs Utilizing Internally Installed Power Cable—A Project Update”, a paper prepared by SPE (Society of Petroleum Engineers) Program Committee for presentation at the 2nd North American Coiled Tubing Roundtable, SPE 38406, Apr. 1997, pp. 1-6. |
Corey, P. S. et al., “Measurements on 5:1 Scaie Abrasive Water Jet Cutting Head Models”, source unknown, available prior to 2012, 15 pages. |
Cruden, D. M. “The Static Fatigue of Brittle Rock Under Uniaxial Compression”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 11, 1974, pp. 67-73. |
da Silva, B. M. G., “Modeling of Crack Initiation, Propagation and Coalescence in Rocks”, a thesis for the degree of Master of Science in Civil and Environmental Engineering at the Massachusetts Institute of Technology, Sep. 2009, pp. 1-356. |
Dahl, F. et al., “Development of a New Direct Test Method for Estimating Cutter Life, Based on the Sievers' J Miniature Drill Test”, Tunnelling and Underground Space Technology, vol. 22, 2007 pp. 106-116. |
de Castro Lima, J. J. et al., “Linear Thermal Expansion of Granitic Rocks: Influence of Apparent Porosity, Grain Size and Quartz Content”, Bull Eng Geol Env., vol. 63, 2004, pp. 215-220. |
Degallaix, J. et al., “Simulation of Bulk-Absorption Thermal Lensing in Transmissive Optics of Gravitational Waves Detector”, Appl. Phys., B77, 2003, pp. 409-414. |
Dey, T. N. et al., “Some Mechanisms of Microcrack Growth and Interaction in Compressive Rock Failure”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 18, 1981, pp. 199-209. |
Dimotakis, P. E. et al., “Flow Structure and Optical Beam Propagation in High-Reynolds-Number Gas-Phase Shear Layers and Jets”, J. Fluid Mech., vol. 433, 2001, pp. 106-134. |
Dole, L. et al., “Cost-Effective Cementitious Material Compatible with Yucca Mountain Repository Geochemistry”, a paper prepared by Oak Ridge National Laboratory for the US Department of Energy, No. ORNL/TM-2004/296. Dec. 2004, 128 pages. |
Dumans, C. F. F. et al., “PDC Bit Selection Method Through the Analysis of Past Bit Performances”, a paper prepared for presentation at the SPE (Society of Petroleum Engineers—Latin American Petroleum Engineering Conference), Oct. 1890, pp. 1-6. |
Dutton, S. P. et al., “Evolution of Porosity and Permeability in the Lower Cretaceous Travis Peak Formation, East Texas”, The American Association of Petroleum Geologists Bulletin, vol. 76, No. 2, Feb. 1992, pp. 252-269. |
Dyskin, A. V. et al., “Asymptotic Analysis of Crack Interaction with Free Boundary”, International Journal of Solids and Structure, vol. 37, 2000, pp. 857-886. |
Eckel, J. R. et al., “Nozzle Design and its Effect on Drilling Rate and Pump Operation”, a paper presented at the spring meeting of the Southwestern District, Division of Production, Beaumont, Texas, Mar. 1951, pp. 28-46. |
Ehrenberg, S. N. et al., “Porosity-Permeability Relationship in Interlayered Limestone-Dolostone Reservoir”, The American Association of Petroleum Geologists Bulletin, vol. 90, No. 1, Jan. 2006, pp. 91-114. |
Ersoy, A., “Wear Characteristics of PDC Pin and Hybrid Core Bits in Rock Drilling”, Wear, vol. 188, 1995, pp. 150-166. |
Falcao, J. L. et al., “PDC Bit Selection Through Cost Prediction Estimates Using Crossplots and Sonic Log Data”, SPE, a paper prepared for presentation at the 1993 SPE/IADC Drilling Conference, Feb. 1993, pp. 525-536. |
Falconer, I. G. et al., “Separating Bit and Lithology Effects from Drilling Mechanics Data”, SPE, a paper prepared for presentation at the 1988 IADC/SPE Drilling Conference, Feb./Mar. 1988, pp. 123-136. |
Farra, G., “Experimental Observations of Rock Failure Due to Laser Radiation”, a thesis for the degree of Master of Science at Massachusetts Institute of Technology, Jan. 1969, 128 pages. |
Farrow, R. L. et al., “Peak-Power Limits on Fiber Amplifiers Imposed by Self-Focusing”, Optics Letters, vol. 31, No. 23, Dec. 1, 2006, pp. 3423-3425. |
Fertl, W. H, et al., “Spectral Gamma-Ray Logging in the Texas Austin Chalk Trend”, SPE of AIME, a paper for Journal of Petroleum Technology, Mar. 1980, pp. 481-488. |
Field, F. A., “A Simple Crack-Extension Criterion for Time-Dependent Spallation”, J. Mech. Phys. Solids, vol. 19, 1971, pp. 61-70. |
Finger, J. T. et al., “PDC Bit Research at Sandia National Laboratories”, Sandia Report No. SAND89-0079-UC-253, a report prepared for US Department of Energy, Jun. 1989, 88 pages. |
Freeman, T. T. et al., “THM Modeling for Reservoir Geomechanical Applications”, presented at the COMSOL Conference, Oct. 2008, 22 pages. |
Friant, J. E. et al., “Disc Cutter Technology Applied to Drill Bits”, a paper prepared by Exacavation Engineering Associates, Inc. for the US Department of Energy's Natural Gas Conference, Mar. 1997, pp. 1-16. |
Fuerschbach, P. W. et al., “Understanding Metal Vaporization from Laser Welding”, Sandia Report No. SAND-2003-3490, a report prepared for DOE, Sep. 2003, pp. 1-70. |
Gahan, B. C. et al., “Analysis of Efficient High-Power Fiber Lasers for Well Perforation”, SPE, No. 90661, a paper prepared for presentation at the SPE Annual Technical Conference and Exhibition, Sep. 2004, 9 pages. |
Gahan, B. C. et al., “Effect of Downhole Pressure Conditions on High-Power Laser Perforation”, SPE, No. 97093, a paper prepared for the 2005 SPE (Society of Petroleum Engineers) Annual Technical Conference and Exhibition, Oct. 12, 2005, 7 pages. |
Gahan, B. C., et al., “Laser Drilling—Drilling with the Power of Light: High Energy Laser Perforation and Completion Techniques”, Annual Technical Progress Report by the Gas Technology Institute, to the Department of Energy, Nov. 2006, 94 pages. |
Gahan, B. C. et al., “Laser Drilling: Drilling with the Power of Light, Phase 1: Feasibility Study”, a Topical Report by the Gas Technology Institute, for the US Government under Cooperative Agreement No. DE-FC26-00NT40917, Sep. 30, 2001, 107 pages. |
Gale, J. F. W. et al., “Natural Fractures in the Barnett Shale and Their Importance for Hydraulic Fracture Treatments”, The American Association of Petroleum Geologists, AAPG Bulletin, vol. 91, No. 4, Apr. 2007, pp. 603-622. |
Gardner, R. D. et al., “Fluorescent Dye Penetrants Applied to Rock Fractures”, Int. J. Rock Mech. Min. Sci., vol. 5, 1968, pp. 155-158 with 2 additional pages. |
Gelman, A., “Multi-level (hierarchical) modeling: what it can and can't do”, source unknown, Jun. 1, 2005, pp. 1-6. |
Gerbaud, L. et al., “PDC Bits: All Comes From the Cutter/Rock Interaction”, SPE, No. IADC/SPE 98988, a paper presented at the IADC/SPE Drilling Conference, Feb. 2006, pp. 1-9. |
Gonthier, F. “High-power All-Fiber® components: The missing link for high power fiber lasers”, source unknown, believed to be publically available prior to Jul. 2010, 11 pages. |
Graves, R. M. et al., “Comparison of Specific Energy Between Drilling With High Power Lasers and Other Drilling Methods”, SPE, No. SPE 77627, a paper presented at the SPE (Society of Petroleum Engineers) Annual Technical Conference and Exhibiton, Sep. 2002, pp. 1-8. |
Graves, R. M. et al., “Spectral signatures and optic coeffecients of surface and reservoir rocks at COIL, CO2 and Nd:YAG laser wavelenghts”, source unknown, believed to be publically available prior to Jul. 2010, 13 pages. |
Graves, R. M. et al., “StarWars Laser Technology Applied to Drilling and Completing Gas Wells”, SPE, No. 49259, a paper prepared for presentation at the 1998 SPE Annual Technical Conference and Exhibition, 1998. 761-770. |
Green, D. J. et al., “Crack Arrest and Multiple Crackling in Glass Through the Use of Designed Residual Stress Profiles”, Science, vol. 283, No. 1295, 1999, pp. 1295-1297. |
Grigoryan, V., “Inhomogeneous Boundary Value Problems”, a lecture for Math 124B, Jan. 26, 2010, pp. 1-5. |
Grigoryan, V., “Separation of variables: Neumann Condition”, a lecture for Math 124A, Dec. 1, 2009, pp. 1-3. |
Gunn, D. A. et al., “Laboratory Measurement and Correction of Thermal Properties for Application to the Rock Mass”, Geotechnical and Geological Engineering, vol. 23, 2005, pp. 773-791. |
Guo, B. et al., “Chebyshev Rational Spectral and Pseudospectral Methods on a Semi-infinite Interval”, Int. J. Numer. Meth. Engng, vol. 53, 2002, pp. 65-84. |
Gurarie, V. N., “Stress Resistance Parameters of Brittle Solids Under Laser/Plasma Pulse Heating”, Materials Science and Engineering, vol. A288, 2000, pp. 168-172. |
Hagan, P. C., “The Cuttability of Rock Using a High Pressure Water Jet”, University of New South Wales, Sydney, Australia, obtained form the Internet on Sep. 7, 2010, at: http://www.mining.unsw.edu.au/Publications/publications—staff/Paper—Hagan—WASM.htm, 16 pages. |
Hall, K. et al., “Rock Albedo and Monitoring of Thermal Conditions in Respect of Weathering: Some Expected and Some Unexpected Results”, Earth Surface Processes and Landforms, vol. 30, 2005, pp. 801-811. |
Hammer, D. X. et al., “Shielding Properties of Laser-Induced Breakdown in Water for Pulse Durations from 5 ns to 125 fs”, Applied Optics, vol. 36, No. 22, Aug. 1, 1997, pp. 5630-5640. |
Hancock, M. J., “The 1-D Heat Equation: 18.303 Linear Partial Differential Equations”, source unknown, 2004, pp. 1-41. |
Hareland, G., et al., “A Drilling Rate Model for Roller Cone Bits and Its Application”, SPE, No. 129592, a paper prepared for presentation at the CPS/SPE International Oil and Gas Conference and Exhibition, Jun. 2010, pp. 1-7. |
Hareland, G. et al., “Drag—Bit Model Including Wear”, SPE, No. 26957, a paper prepared for presentation at the Latin American/Caribbean Petroleum Engineering Conference, Apr. 1994, pp. 657-667. |
Harrison, C. W. III et al., “Reservoir Characterization of the Frontier Tight Gas Sand, Green River Basin, Wyoming”, SPE, No. 21879, a paper prepared for presentation at the Rocky Mountain Regional Meeting and Low-Permeability Reservoirs Symposium, Apr. 1991, pp. 717-725. |
Hashida, T. et al., “Numerical Simulation with Experimental Verification of the Fracture Behavior in Granite Under Confining Pressures based on the Tension-Softening Model”, International Journal of Fracture, vol. 59, 1993, pp. 227-244. |
Hasting, M. A. et al., “Evaluation of the Environmental Impacts of Induced Seismicity at the Naknek Geothermal Energy Project, Naknek, Alaska”, a final report prepared for ASRC Energy Services Alaska Inc., May 2010, pp. 1-33. |
Head, P. et al., “Electric Coiled Tubing Drilling (E-CTD) Project Update”, SPE, No. 68441, a paper prepared for presentation at the SPE/CoTA Coiled Tubing Roundtable, Mar. 2001, pp. 1-9. |
Hood, M., “Waterjet-Assisted Rock Cutting Systems—The Present State of the Art”, International Journal of Mining Engineering, vol. 3, 1985, pp. 91-111. |
Howard, A. D. et al., “VOLAN Interpretation and Application in the Bone Spring Formation (Leonard Series) in Southeastern New Mexico”, SPE, No. 13397, a paper presented at the 1984 SPE Production Technology Symposium, Nov. 1984, 10 pages. |
Howells, G., “Super-Water [R] Jetting Applications from 1974 to 1999”, paper presented st the Proceedings of the 10th American Waterjet Confeence in Houston, Texas, 1999, 25 pages. |
Hu, H. et al., “Simultaneous Velocity and Concentration Measurements of a Turbulent Jet Mixing Flow”, Ann. N.Y. Acad. Sci., vol. 972, 2002, pp. 254-259. |
Huang, C. et al., “A Dynamic Damage Growth Model for Uniaxial Compressive Response of Rock Aggregates”, Mechanics of Materials, vol. 34, 2002, pp. 267-277. |
Huang, H. et al., “Intrinsic Length Scales in Tool-Rock Interaction”, International Journal of Geomechanics, Jan./Feb. 2008, pp. 39-44. |
Huenges, E. et al., “The Stimulation of a Sedimentary Geothermal Reservoir in the North German Basin: Case Study Grob Schonebeck”, Proceedings, Twenty-Ninth Workshop on Geothermal Reservoir Engineering, Stanford University, Stanford, California, Jan. 26-28, 2004, 4 pages. |
Hutchinson, J. W., “Mixed Mode Cracking in Layered Materials”, Advances in Applied Mechanics, vol. 29, 1992, pp. 63-191. |
Imbt, W. C. et al., “Porosity in Limestone and Dolomite Petroleum Reservoirs”, paper presented at the Mid Continent District, Division of Production: Oklahoma City: Oklahoma, Jun. 1946, pp. 364-372. |
Jackson, M. K. et al., “Nozzle Design for Coherent Water Jet Production”, source unknown, believed to be published prior to 2012, pp. 53-89. |
Jadoun, R. S., “Study on Rock-Drilling Using PDC Bits for the Prediction of Torque and Rate of Penetration”, Int. J. Manufacturing Technology and Management, vol. 17, No. 4, 2009, pp. 408-418. |
Jain, R. K. et al., “Development of Underwater Laser Cutting Technique for Steel and Zircaloy for Nuclear Applications”, Journal of Physics for Indian Academy of Sciences, vol. 75 No. 6, Dec. 2010, pp. 1253-1258. |
Jen, C. K. et al., “Leaky Modes in Weakly Guiding Fiber Acoustic Waveguides”, IEEE Transactions on Ultrasonic Ferroolectrics and Frequency Control, vol. UFFC-33 No. 6, Nov. 1986, pp. 634-643. |
Judzis, A. et al., “Investigation of Smaller Footprint Drilling System; Ultra-High Rotary Speed Diamond Drilling Has Potential for Reduced Energy Requirements”, IADC/SPE No. 99020: believed to be publically available prior to Jul. 2010, 33 pages. |
Jurewicz, B. R., “Rock Excavation with Laser Assistance”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 13, 1976, pp. 207-219. |
Karakas, M., “Semianalytical Productivity Models for Perforated Completions”, SPE, No. 18247, a paper for SPE (Society of Petroleum Engineers) Production Engineering, Feb. 1991, 73-82. |
Karasawa, H. et al., “Development of PDC Bits for Downhole Motors”, Proceedings 17th NZ Geothermal Workshop, 1995 , pp. 145-150. |
Kemeny, J. M., “A Model for Non-linear Rock Deformation Under Compression Due to Sub-critical Crack Growth”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 28 No. 6, 1991, pp. 459-467. |
Khandelwal, M., “Prediction of Thermal Conductivity Rocks by Soft Computing”, Int. J. Earth Sci. (Geol. Rundsch), May 11, 2010, 7 pages. |
Kim, C. B. et al., “Measurement of the Refractive Index of Liquids at 1,3 and 1.5 Micron Using a Fibre Optic Fresnel Ratio Meter”, Meas. Sci. Technol., vol. 5, 2004, pp. 1683-1686. |
Kiwata, T. et al., “Flow Visualization and Characteristics of a Coaxial Jet with a Tabbed Annular Nozzle”, JSME International Journal Series B, vol. 49, No. 4, 2006, pp. 906-913. |
Kobayashi, T. et al., “Drilling a 2-inch in Diameter Hole in Granites Submerged in Water by CO2 Lasers”, SPE, No. 119914, a paper prepared for presentation at the SPE/IADC Drilling Conference and Exhibition, Mar. 2009, 6 pages. |
Kobyakov, A. et al., “Design Concept for Optical Fibers with Enhanced SBS Threshold”, Optics Express, vol. 13, No. 14, Jul. 11, 2005, pp. 5338-5346. |
Kolari, K., “Damage Mechanics Model for Brittle Failure of Transversely Isotropic Solids (Finite Element Implementation)”, VTT Publications 628, 2007, 210 pages. |
Kollé, J. J., “A Comparison of Water Jet, Abrasive Jet and Rotary Diamond Drilling in Hard Rock”, Tempress Technologies Inc., 1999, pp. 1-8. |
Kolle, J. J., “HydroPulse Drilling”, a Final Report for US Department of Energy under Cooperative Development Agreement No. DE-FC26-FT34367, Apr. 2004, 28 pages. |
Kovalev, V. I. et al., “Observation of Hole Burning in Spectrum in SBS in Optical Fibres Under CW Monochromatic Laser Excitation”, IEEE, Jun. 3, 2010, pp. 56-57. |
Koyamada, Y. et al., “Simulating and Designing Brillouin Gain Spectrum in Single-Mode Fibers”, Journal of Lightwave Technology, vol. 22, No. 2, Feb. 2004, pp. 631-639. |
Krajcinovic, D. et al., “A Micromechanical Damage Model for Concrete”, Engineering Fracture Mechanics, vol. 25, No. 5/6, 1986, pp. 585-596. |
Kranz, R. L., “Microcracks in Rocks: A Review”, Tectonophysics, vol. 100, 1983, pp. 449-480. |
U.S. Appl. No. 12/543,986, filed Aug. 19, 2013, Moxley et al. |
U.S. Appl. No. 12/544,094, filed Aug. 19, 2009, Faircloth et al. |
U.S. Appl. No. 12/543,968, filed Aug. 19, 2009, Rinzler et al. |
U.S. Appl. No. 12/544,136, filed Aug. 19, 2009, Zediker et al. |
U.S. Appl. No. 12/544,038, filed Aug. 19, 2009, Zediker et al. |
U.S. Appl. No. 12/706,576, filed Feb. 16, 2010, Zediker et al. |
U.S. Appl. No. 12/840,978, filed Jul. 21, 2010, Rinzler et al. |
U.S. Appl. No. 12/896,021, filed Oct. 1, 2010, Underwood et al. |
U.S. Appl. No. 13/034,017, filed Feb. 24, 2011, Zediker et al. |
U.S. Appl. No. 13/034,037, filed Feb. 24, 2011, Zediker et al. |
U.S. Appl. No. 13/034,175, filed Feb. 24, 2011, Zediker et al. |
U.S. Appl. No. 13/034,183, filed Feb. 24, 2011, Zediker et al. |
U.S. Appl. No. 13/210,581, filed Aug. 16, 2011, DeWitt et al. |
U.S. Appl. No. 13/211,729, filed Aug. 17, 2011, DeWitt et al. |
U.S. Appl. No. 13/222,931, filed Aug. 31, 2011, Zediker et al. |
U.S. Appl. No. 13/347,445, filed Jan. 10, 2012, Zediker et al. |
U.S. Appl. No. 13/403,132, filed Feb. 23, 2012, Zediker et al. |
U.S. Appl. No. 13/403,287, filed Feb. 23, 2012, Grubb et al. |
U.S. Appl. No. 13/403,615, filed Feb. 23, 2012, Grubb et al. |
U.S. Appl. No. 13/403,692, filed Feb. 23, 2012, Zediker et al. |
U.S. Appl. No. 13/403,723, filed Feb. 23, 2012, Rinzler et al. |
U.S. Appl. No. 13/403,509, filed Feb. 23, 2012, Fraze et al. |
U.S. Appl. No. 13/403,741, filed Feb. 23, 2012, Zediker et al. |
U.S. Appl. No. 13/486,795, filed Feb. 23, 2012, Rinzler et al. |
U.S. Appl. No. 13/565,345, filed Feb. 23, 2012, Zediker et al. |
U.S. Appl. No. 13/768,149, filed Feb. 15, 2013, Zediker et al. |
U.S. Appl. No. 13/777,650, filed Feb. 26, 2013, Zediker et al. |
U.S. Appl. No. 13/782,869, filed Mar. 1, 2013, Schroit et al. |
U.S. Appl. No. 13/782,942, filed Mar. 1, 2013, Norton et al. |
U.S. Appl. No. 13/800,559, filed Mar. 13, 2013, Zediker et al. |
U.S. Appl. No. 13/800,820, filed Mar. 13, 2013, Zediker et al. |
U.S. Appl. No. 13/800,879, filed Mar. 13, 2013, Zediker et al. |
U.S. Appl. No. 13/800,933, filed Mar. 13, 2013, Zediker et al. |
U.S. Appl. No. 13/849,831, filed Mar. 25, 2013, Zediker et al. |
International Search Report and Written Opinion for PCT App. No. PCT/US10/24368, dated Nov. 2, 2010, 16 pgs. |
International Search Report for PCT Application No. PCT/US09/54295, dated Apr. 26, 2010, 16 pgs. |
International Search Report for PCT Application No. PCT/US2011/044548, dated Jan. 24, 2012, 17 pgs. |
International Search Report or PCT Application No. PCT/US2011/047902, dated Jan. 17, 2012, 9 pgs. |
International Search Report or PCT Application No. PCT/US2011/044548, dated Jan. 24, 2012, 17 pgs. |
International Search Report for PCT Application No. PCT/US2011/050044 dated Feb. 1, 2012, 26 pgs. |
International Search Report for PCT Application No. PCT/US2012/026265, dated May 30, 2012, 14 pgs. |
International Search Report for PCT Application No. PCT/US20121/026526, dated May 31, 2012, 10 pgs. |
International Search Report for PCT Application No. PCT/US2012/026494, dated May 31, 2012, 12 pgs. |
International Search Report for PCT Application No. PCT/US2012/049338, dated Jan. 22, 2013, 14 pgs. |
Agrawal Dinesh et al., “Microstructural by TEM of WC/Co composites Prepared by Conventional and Microwave Processes”, Materials Research Lab, The Pennsylvania State University, 15th International Plansee Seminar, vol. 2, , 2001, pp. 677-684. |
Agrawal Dinesh et al., Report on “Development of Advanced Drill Components for BHA Using Mircowave Technology Incorporating Carbide Diamond Composites and Functionally Graded Materials”, Microwave Processing and Engineering Center, Material Research Institute, The Pennsylvania State University, 2003, 10 pgs. |
Agrawal Dinesh et al., Report on “Graded Steele-Tungsten Cardide/Cobalt-Diamond Systems Using Microwave Heating”, Material Research Institute, Penn State University, Proceedings of the 2002 International Conference on Functionally Graded Materials, 2002, pp. 50-58. |
Agrawal, Govind P., “Nonlinear Fiber Optics”, Chap. 9, Fourth Edition, Academic Press copyright 2007, pp. 334-337. |
Ai, H.A. et al., “Simulation of dynamic response of granite: A numerical approach of shock-induced damage beneath impact craters”, International Journal of Impact Engineering, vol. 33, 2006, pp. 1-10. |
Albertson, M. L. et al., “Diffusion of Submerged Jets”, a paper for the American Society of Civil Engineers, Nov. 5, 1852, pp. 1571-1596. |
Al-Harthi, A. A. et al., “The Porosity and Engineering Properties of Vesicular Basalt in Saudi Arabia”, Engineering Geology, vol. 64, 1999, pp. 313-320. |
Anand, U. et al., “Prevention of Nozzle Wear in Abrasive Water Suspension Jets (AWSJ) Using PoroLubricated Nozzles”, Transactions of the ASME, vol. 125, Jan. 2003, pp. 168-181. |
Anton, Richard J. et al., “Dynamic Vickers indentation of brittle materials”, Wear, vol. 239, 2000, pp. 27-35. |
Ashby, M. F. et al., “The Failure of Brittle Solids Containing Small Cracks Under Compressive Stress States”. Acta Metall., vol. 34, No. 3,1986, pp. 497-510. |
ASTM International, “Standard Test Method for Thermal Conductivity of Solids by Means of the Guarded-Comparative-Longitudinal Heat Flow Technique”, Standard under the fixed Designation E1225-09: 2009, pp. 1-9. |
Avar, B. B. et al., “Porosity Dependence of the Elastic Modulof Lithophysae-rich Tuff: Numerical and Experimental Investigations”, International Journal of Rock Mechanics & Mining Sciences, vol. 40, 2003, pp. 919-928. |
Aydin, A. et al., “The Schmidt hammer in rock material characterization”, Engineering Geology, vol. 81, 2005, pp. 1-14. |
Backers, T. et al., “Tensile Fracture Propagation and Acoustic Emission Activity in Sandstone: The Effects of Loading Rate”, International Journal of Rock Mechanics & Mining Sciences, vol. 42, 2005, pp. 1094-1101. |
Baflon, Jean-Paul et al., “On the Relationship Between the Parameters of Paris' Law for Fatigue Crack Growth in Aluminium Alloys”, Scripta Metallurgica, vol. 11, No. 12, 1977, pp. 1101-1106. |
Bailo, El Tahir et al., “Spectral signatures and optic coefficients of surface and reservoir shales and limestones at COIL, CO2 and Nd:YAG laser wavelengths”, Petroleum Engineering Department, Colorado School of Mines, 2004, 13 pgs. |
Baird, J. A. “GEODYN: A Geological Formation/Drillstring Dynamics Computer Program”, Society of Petroleum Engineers of AIME, 1964, 9 pgs. |
Baird, J. A. et al., “Analyzing the Dynamic Behavior of Downhole Equipment During Drilling”, government Sandia Report, SAND-84-0758C, DE84 008840, 7 pages. |
Baird, Jerold et al., Phase 1 Theoretical Description, A Geological Formation Drill String Dynamic Interaction Finite Element Program (GEODYN), Sandia National Laboratories, Report No. Sand-84-7101, 1984, 196 pgs. |
Batarseh, S. I. et al, “Innovation in Wellbore Perforation Using High-Power Laser”, International Petroleum Technology Conference, IPTC No. 10981, Nov. 2005, 7 pages. |
Batarseh, S. et al. “Well Perforation Using High-Power Lasers”, Society of Petroleum Engineers, SPE 84418, 2003, pp. 1-10. |
BDM Corporation, Geothermal Completion Technology Life-Cycle Cost Model (GEOCOM), Sandia National Laboratories, for the U.S. Dept. of Energy, vols. 1 and 2, 1982, 222 pgs. |
Bechtel SAIC Company LLC, “Heat Capacity Analysis”, a report prepared for Department of Energy, Nov. 2004, 100 pages. |
Benavente, D. et al., “The Combined Influence of Mineralogical, Hygric and Thermal Properties on the Durability of PoroBuilding Stones”, Eur. J. Mineral, vol. 20, Aug. 2008, pp. 673-685. |
Beste, U. et al., “Micro-scratch evaluation of rock types—a means to comprehend rock drill wear”, Tribology International, vol. 37, 2004, pp. 203-210. |
Bieniawski, Z. T., “Mechanism of Brittle Fracture of Rock: Part I—Theory of the Fracture Process”, Int. J. Rock Mech. Min, Sci., vol. 4, 1967: pp. 395-406. |
Birkholzer, J. T. et al., “The Impact of Fracture—Matrix Interaction on Thermal-Hydrological Conditions in Heated Fractured Rock”, an origial research paper published online http://vzy.scijournals.org/cgi/content/full/5/657, May 26, 2006, 27 pages. |
Blackwell, B. F., “Temperature Profile in Semi-infinite Body With Exponential Source and Convective Boundary Condition”, Journal of Heat Transfer, Transactions of the ASME, vol. 112, 1990, pp. 567-571. |
Boechat, A. A. P. et al., “Bend Loss in Large Core Muitimode Optical Fiber Beam Delivery Systems”, Applied Optics., vol. 30 No. 3, Jan. 20, 1991, pp. 321-327. |
Britz, Dieter, “Digital Simulation in Electrochemistry”, Lect. Notes Phys., vol. 666, 2005, pp. 103-117. |
Browning, J. A. et al., “Recent Advances in Flame Jet Working of Minerals”, 7th Symposium on Rock Mechanics, Pennsylvania State Univ., 1965, pp. 281-313. |
Brujan, E. A. et al., “Dynamics of Laser-Induced Cavitation Bubbles Near an Elastic Boundar”, J. Fluid Mech., vol. 433, 2001, pp. 251-281. |
Bybee, K., “Modeling Laser-Spallation Rock Drilling”, JPT, an SPE available at www.spe.org/jpt, Feb. 2006, 2 pp. 62-63. |
Bybee, Karen, highlight of “Drilling a Hole in Granite Submerged in Water by Use of CO2 Laser”, an SPE available at www.spe.org/jpt, JPT, Feb. 2010, pp. 48, 50 and 51. |
Cardenas, R., “Protected Polycrystalline Diamond Compact Bits for Hard Rock Drilling”, Report No. DOE-99049-1381, U.S. Department of Energy, 2000, pp. 1-79. |
Carstens, Jeffrey et al., “Heat-Assisted Tunnel Boring Machines”, Federal Railroad Administration and Urban Mass Transportation Administration, U.S. Dept. of Transportation, Report No. FRA-RT-71-63, 1970, 340 pgs. |
Chen. K., paper titled “Analysis of Oil Film Interferometry Implementation in Non-Ideal Conditions”, source unknown, Jan. 7, 2010, pp. 1-18. |
Cimetiere, A. et al., “A Damage Model for Concrete Beams in Compression”, Mechanics Research Communications, vol. 34, 2007. pp. 91-96. |
Clegg, John et al., “Improved Optimisation of Bit Selection Using Mathematically Modelled Bit-Performance Indices”, IADC/SPE International 102287, 2006, pp. 1-10. |
Close, F. et al., “Successful Drilling of Basalt in a West of Shetland Deepwater Discovery”, a paper prepared for presentation at Offshore Europe 2005 by SPE (Society of Petroleum Engineers) Program Committee, SPE No. 96575, Sep. 2005, pp. 1-10. |
Close, F. et al., “Successful Drilling of Basalt in a West of Shetland Deepwater Discovery”, SPE International 90575, Society of Petroleum Engineers, 2006, pp. 1-10. |
Cobern, Martin E., “Downhole Vibration Monitoring & Control System Quarterly Technical Report #1”, APS Technology, Inc., Quarterly Technical Report #1, DVMCS, 2003, pp. 1-15. |
Cogotsi, G. A. et al., “Use of Nondestructive Testing Methods in Evaluation of Thermal Damage for Ceramics Under Conditions of Nonstationary Thermal Effects”, Institute of Strength Problems, Academy of Sciences of the Ukrainian SSR, 1985, pp. 52-56. |
Cook, Troy, “Chapter 23, Calculation of Estimated Ultimate Recovery (EUR) for Wells in Continuous-Type Oil and Gas Accumulations”, U.S. Geological Survey Digital Data Series DDS-69-D, Denver, Colorado: Version 1, 2005, pp. 1-9. |
Coray, P. S. et al., “Measurements on 5:1 Scale Abrasive Water Jet Cutting Head Models”, source unknown, available prior to 2012, 15 pages. |
Cruden. D. M., “The Static Fatigue of Brittle Rock Under Uniaxial Compression”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 11, 1974, pp. 67-73. |
Dahl, F. et al., “Development of a New Direct Test Method for Estimating Cutter Life, Based on the Sievers' J Miniature Drill Test”, Tunnelling and Underground Space Technology, vol. 22, 2007, pp. 106-116. |
Dahl, Filip et al., “Development of a new direct test method for estimating cutter life, based on the Sievers J miniature drill test”, Tunnelling and Underground Space Technology, vol. 22, 2007, pp. 106-116. |
Damzen, M. J. et al., “Stimulated Brillion Scattering”, Chapter 8—SBS in Optical Fibres, OP Publishing Ltd, Published by Institute of Physics, London, England, 2003, pp. 137-153. |
Das, A. C. et al., “Acousto-ultrasonic study of thermal shock damage in castable refractory”, Journal of Materials Science Letters, vol. 10, 1991, pp. 173-175. |
de Castro Lima, J. J. et al., “Linear Thermal Expansion of Granitic Rocks: Influence of Apparent Porosity, Grain Size and Quartz Content”, Bull Eng Geol Env., 2004, vol. 63, pp. 215-220. |
De Guire, Mark R., “Thermal Expansion Coefficient (start)”, EMSE 201—Introduction to Materials Science & Engineering, 2003, pp. 15.1-15.15. |
Diamond-Cutter Drill Bits, by Geothermal Energy Program, Office of Geothermal and Wind Technologies, 2000, 2 pgs. |
Dimotakis: P. E. et al., “Flow Structure and Optical Beam Propagation in High-Reynolds-Number Gas-Phase Shear Layers and Jets”, J. Fluid Mech., vol. 433, 2001, pp. 105-134. |
Dinçer, Ismail et al., “Correlation between Schmidt hardness, uniaxiai compressive strength and Young's modulfor andesites, basalts and tuffs”, Bull Eng Gaol Env. vol. 63, 2004, pp. 141-148. |
Dole, L. et al., “Cost-Effective CementitioMaterial Compatible with Yucca Mountain Repository Geochemistry”, a paper prepared by Oak Ridge National Laboratory for the Department of Energy, No. ORNL/TM-2004/296, Dec. 2004, 128 pages. |
Dumans, C. F. F. et al., “PDC Bit Selection Method Through the Analysis of Past Bit Performances”, a paper prepared for presentation at the SPE (Society of Petroleum Engineers—Latin American Petroleum Engineering Conference), Oct. 1990, pp. 1-6. |
Dunn, James C., “Geothermal Technology Development at Sandia”, Geothermal Research Division, Sandia National Laboratories, 1987, pp. 1-6. |
Dutton, S. P. et al., “Evolution of Porosity and Permeability in the Lower CretaceoTravis Peak Formation, East Texas”, The American Association of Petroleum Geologists Bulletin, vol. 76, No. 2, Feb. 1992, pp. 252-269. |
Eichler, H.J. et al., “Stimulated Brillouin Scattering in Multimode Fibers for Optical Phase Conjugation”, Optics Communications, vol. 208, 2002, pp. 427-431. |
Eighmy, T. T. et al., “Microfracture Surface Charaterizations: Implications for In Situ Remedial Methods in Fractured Rock”, Bedrock Bioremediation Center, Final Report, National Risk Management Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, EPA/600/R-05/121, 2006, pp. 1-99. |
Elsayed, M.A. et al., “Measurement and analysis of Chatter in a Compliant Model of a Drillstring Equipped With a PDC Bit”, Mechanical Engineering Dept., University of Southwestern Louisiana and Sandia National Laboratories, 2000, pp. 1-10. |
Ersoy, A., “Wear Characteristics of PDC Pin and Hybrid Core Bits in Rock Drilling”, Wear, vol. 188, 1995, pp. 150-165. |
Extreme Coil Drilling, by Extreme Drilling Corporation, 2009, 10 pgs. |
Falcao, J. L. et al., “PDC Bit Selection Through Cost Prediction Estimates Using Crossplots and Sonic Log Data”, SPE, a paper prepared for presentation at the 1993 SPE/IADC Drilling Conference, Feb. 1993, pp. 525-535. |
Ferro, D. et al., “Vickers and Knoop hardness of electron beam deposited ZrC and HfC thin films on titanium”, Surface & Coatings Technology, vol. 200, 2006, pp. 4701-4707. |
Fertl, W. H. et al., “Spectral Gamma-Ray Logging in the Texas Austin Chalk Trend”, SPE of AIME, a paper for Journal of Petroleum Technology, Mar. 1980, pp. 481-488. |
Figueroa, H. et al., “Rock removal using high power lasers for petroleum exploitation purposes”, Gas Technology Institute, Colorado School of Mines, Halliburton Energy Services, Argonne National Laboratory, 2002, pp. 1-13. |
Finger, J. T. et al., “PDC Bit Research at Sandia National Laboratories”, Sandia Report No. SAND89-0079-UC-253, a report prepared for Department of Energy, Jun. 1989, 88 pages. |
Finger, John T. et al., “PDC Bit Research at Sandia National Laboratories”, Sandia Report, Geothermal Research Division 6252 Sandia National Laboratories, SAND89-0879-UC-253, 1989, 1-88. |
Friant, J. E. et al., “Disc Cutter Technology Applied to Drill Bits”, a paper prepared by Exacavation Engineering Associates, Inc. for the Department of Energy's Natural Gas Conference, Mar. 1997, pp. 1-16. |
Gahan, B. C. et al., “Laser Drilling: Drilling with the Power of Light, Phase 1: Feasibility Study”, a Topical Report by the Gas Technology Institute, for the Government under Cooperative Agreement No. DE-FC26-00NT40917, Sep. 30, 2001, 107 pages. |
Gahan, B. C. et al., “Laser Drilling: Determination of Energy Required to Remove Rock”. Society of Petroleum Engineers International, SPE 71466, 2001, pp. 1-11. |
Gahan, Brian C. et al. “Analysis of Efficient High-Power Fiber Lasers for Well Perforation”, Society of Petroleum Engineers, SPE 90661, 2004, pp. 1-9. |
Gahan, Brian C. et al. “Efficient of Downhole Pressure Conditions on High-Power Laser Perforation”, Society of Petroleum Engineers, SPE 97093, 2005, pp. 1-7. |
Gahan, Brian C. et al., “Laser Drilling: Drilling with the Power of Light, Phase 1: Feasibility Study”, Topical Report, Cooperative Agreement No. DE-FC26-00NT40917, 2000-2001, pp. 1-148. |
Gale, J. F. W. et al., “Natural Fractures in the Barnett Shale and Their Importance for Hydraulic Fracture Treatments”, The American Assoction of Petroleum Geologists, AAPG Bulletin, vol. 91, No. 4, Apr. 2007, pp. 603-622. |
Gardner, R. D. et al., “Flourescent Dye Penetrants Applied to Rock Fractures”, Int. J. Rock Mech. Min. Sci., vol. 5, 1968, pp. 155-158 with 2 additional pages. |
Gelman, A., “Multi-ievel (hierarchical) modeling: what it can and can't do”, source unknown, Jun. 1, 2005, pp. 1-6. |
Gerbaud, L. et al., “PDC Bits: All Comes From the Cutter/Rock Interaction”, SPE, No. IADC/SPE 98988, a paper presented at the IADC/ISPE Drilling Conference, Feb. 2006, pp. 1-9. |
Glowka, David A. et al., “Program Plan for the Development of Advanced Synthetic-Diamond Drill Bits for Hard-Rock Drilling”, Sandia National Laboratories, SAND 93-1953, 1993, pp. 1-50. |
Glowka, David A. et al., “Progress in the Advanced Synthetic-Diamond Drill Bit Program”, Sandia National Laboratories, SAND95-2617C, 1994, pp. 1-9. |
Glowka, David A., “Design Considerations for a Hard-Rock PDC Drill Bit”, Geothermal Technology Development Division 6241 Sandia National Laboratories, SAND-85-0666C, DE85 008313, 1985, pp. 1-23. |
Glowka, David A., “Development of a Method for Predicting the Performance and Wear of PDC Drill Bits”, Sandia National Laboratories, SAND86-1745-UC-66c, 1987, pp. 1-206. |
Glowka, David A., “The Use of Single-Cutter Data in the Analysis of PDC Bit Designs”, 61st Annual Technical Conference and Exhibition of Society of Petroleum Engineers, 1986, pp. 1-37. |
Gonthier, F. “High-power All-Fiber® components: The missing link for high power fiber fasers”, source unknown, 11 pages. |
Graves, R. M. et al., “Comparison of Specific Energy Between Drilling With High Power Lasers and Other Drilling Methods”, SPE, No. SPE 77627, a paper presented at the SPE (Society of Petroleum Engineers) Annual Technical Conference and Exhibiton, Sep. 2002. pp. 1-8. |
Graves, R. M. et al., “Spectral signatures and optic coeffecients of surface and reservoir rocks at COIL, CO2 and Nd:YAG laser wavelenghts”, source unknown, 13 pages. |
Graves, R. M. et al., “StarWars Laser Technology Applied to Drilling and Completing Gas Wells”, SPE, No. 49259, a paper prepared for presentation at the 1898 SPE Annual Technical Conference and Exhibition, 1998, pp. 761-770. |
Graves, Ramona M. et al., “Application of High Power Laser Technology to Laser/Rock Destruction: Where Have We Been? Where Are We Now?”, SW AAPG Convention, 2002, pp. 213-224. |
Graves, Ramona M. et al., “Laser Parameters That Effect Laser-Rock Interaction: Determining the Benefits of Applying Star Wars Laser Technology for Drilling and Completing Oil and Natural Gas Wells”, Topical Report, Petroleum Engineering Department, Colorado School of Mines, 2001, pp. 1-157. |
Grigoryan, V., “InhomogeneoBoundary Value Problems”, a lecture for Math 124B, Jan. 26, 2010, pp. 1-5. |
Grigoryan, V., “Separathion of variables: Neumann Condition”, a lecture for Math 124A, Dec. 12, 2009, pp. 1-3. |
Habib, P. et al., “The Influence of Residual Stresses on Rock Hardness”, Rock Mechanics, vol. 6, 1974, pp. 15-24. |
Hall, K. et al., “Rock Albedo and Monitoring of Thermal Conditions in Respect of Weathering: Some Expected and Some Unexpected Results”, Earth Surface Processes and Landforms. vol. 30, 2005, pp. 801-811. |
Hall, Kevin, “The role of thermal stress fatigue in the breakdown of rock in cold regions”, Geomorphology, vol. 31. 1999, pp. 47-63. |
Han, Wei, “Computational and experimental investigations of laser drilling and welding for microelectronic packaging”, Dorchester Polytechnic Institute, A Dissertation submitted in May 2004, 242 pgs. |
Hareland, G. et al., “Cutting Efficiency of a Single PDC Cutter on Hard Rock”, Journal of Canadian Petroleum Technology, vol. 48, No. 6, 2009, pp. 1-6. |
Healy, Thomas E., “Fatigue Crack Growth in Lithium Hydride”, Lawrence Livermore National Laboratory, 1993, pp. 1-32. |
Hettema, M. H. H. et al., “The Influence of Steam Pressure on Thermal Spalling of Sedimentary Rock: Theory and Experiments”, Int. J. Rock Mech. Min. Sci., vol. 35, No. 1, 1998, pp. 3-15. |
Hibbs, Louis E. et al., “Wear Mechanisms for Polycrystalline-Diamond Compacts as Utilized fro Drilling in Geothermal Environments”, Sandia National Laboratories, for the United States Government, Report No. SAND-82/7213, 1983, 287 pgs. |
Hoek, E., “Fracture of Anisotropic Rock”, Journal of the African Institute of Mining and Metallurgy, vol. 64, No. 10, 1964, pp. 501-523. |
Hoover, Ed R. et al., “Failure Mechanisms of Polycrystalline-Diamond Compact Drili Bits in Geothermal Environments”, Sandia Report, Sandia National Laboratories, SAND81-1404, 1981, pp. 1-35. |
Hu, H. et al., “SimultaneoVelocity and Concentration Measurements of a Turbulent Jet Mixing Flow”, Ann. N.Y. Acad. Sci., vol. 972, 2002, pp. 254-259. |
Huff, C. F. et al., “Recent Developments in Polycrystalline Diamond-Drill-Bit Design”, Drilling Technology Division—4741, Sandia National Laboratories, 1980, pp. 1-29. |
IADC Dull Grading System for Fixed Cutter Bits, by Hughes Christensen, 1996, 14 pgs. |
Imbt, W. C. et al., “Porosity in Limestone and Dolomite Petroleum Reservoirs”, paper presented at the Mid Continent District, Division of Production, Oklahoma City, Oklahoma. Jun. 1946, pp. 364-372. |
Jen, C. K. et al., “Leaky Modes in Weakly Guiding Fiber Acoustic Waveguides”, IEEE Transactions on Ultrasonic Ferroelectrics and Frequency Control, vol. UFFC-33 No. 6, Nov. 1986, pp. 634-643. |
Jimeno, Carlos Lopez et al., Drilling and Blasting of Rocks, a. a. Baikema Publishers, 1995, 30 pgs. |
Judzis, A. et al., “Investigation of Smaller Footprint Drilling System; Ultra-High Rotary Speed Diamond Drilling Has Potential for Reduced Energy Requirements”, IADC/SPE No. 99020, 33 pages. |
Jurewicz, B. R., “Rock Excavation with Laser Assistance”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr. vol. 13, 1976, pp. 207-219. |
Kahraman, S. et al., “Dominant rock properties affecting the penetration rate of percussive drills”, International Journal of Rock Mechanics and Mining Sciences, 2003, vol. 40, pp. 711-723. |
Karakas, M., “Semianalytical Productivity Models for Perforated Completions”, SPE, No. 18247, a paper for SPE (Society of Petroleum Engineers) Production Engineering, Feb. 1991, pp. 73-82. |
Karasawa, H. et al., “Development of PDC Bits for Downhole Motors”, Proceedings 17th NZ Geothermal Workshop, 1995, pp. 145-150. |
Kelsey, James R., “Drilling Technology/GDO”, Sandia National Laboratories, SAND-85-1866c. DE85 017231, 1985, pp. 1-7. |
Kerr, Callin Joe, “PDC Drill Bit Design and Field Application Evolution”, Journal of Petroleum Technology, 1988, pp. 327-332. |
Ketata, C. et al., “Knowledge Selection for Laser Drilling in the Oil and Gas Industry”, Computer Society, 2005, pp. 1-6. |
Khan, Ovais U. et al., “Laser heating of sheet metal and thermal stress development”, Journal of Materials Processing Technology, vol. 155-156, 2004, pp. 2045-2050. |
Khandelwal, M., “Prediction of Thermal Conductivity of Rocks by Soft Computing”, Int. J. Earth Sci. (Geol. Rundsch), May 11, 2010, 7 pages. |
Kim, C. B. et al., “Measurement of the Refractive Index of Liquids at 1.3 and 1.5 Micron Using a Fibre Optic Fresnel Ratio Meter”, Meas. Sci. Technol.,vol. 5, 2004, pp. 1683-1686. |
Kim, K. R. et al., “CO2 laser-plume interaction in materials processing”, Journal of Applied Physics, vol. 89. No. 1, 2001, pp. 681-688. |
Klotz, K. et al., “Coatings with intrinsic stress profile: Refined creep analysis of (Ti,A1)N and cracking due to cyclic laser heating”, Thin Solid Films. vol. 496, 2006, pp. 469-474. |
Kobayashi, Toshio et al., “Drilling a 2-inch in Diameter Hole in Granites Submerged in Water by CO2 Lasers”, SPE International, IADC 119914 Drilling Conference and Exhibition, 2009, pp. 1-11. |
Kobyakov, A. et al., “Design Concept for Optical Fibers with Enhanced SBS Threshold”, Optics Express, vol. 13, No. 14, Jul. 11, 2005, pp. 5338-6346. |
Kollé, J. J., “A Comparison of Water Jet, Abrasive Jet and Rotary Diamond Drilling in Hard Rock”, Tempress Technologies Inc. , 1999, pp. 1-8. |
Kolle, J. J., “HydroPulse Drilling”, a Final Report for Department of Energy under Cooperative Development Agreement No. DE-FC26-FT34367, Apr. 2004, 28 pages. |
Kubacki, Emily et al., “Optics for Fiber Laser Applications”, CVI Laser, LLC, Technical Reference Document #20050415, 2005, 5 pgs. |
Kujawski, Daniel, “A fatigue crack driving force parameter with load ratio effects”, International Journal of Fatigue, vol. 23, 2001, pp. S239-S246. |
Labuz, J. F. et al., “Size Effects in Fractured of Rock”, Rock Mechanics for Industry, Amadei, Kranz, Scott & Smeallie (eds), 1999, pp. 1137-1143. |
Labuz, J. F. et al., “Microrack-dependent fracture of damaged rock”, International Journal of Fracture, vol. 51, 1991, pp. 231-240. |
Lacy, Lewis L., “Dynamic Rock Mechanics Testing for Optimized Fracture Designs”, Society of Petroleum Engineers International, Annual Technical Conference and Exhibition, 1997, pp. 23-36. |
Lally, Evan M., “A Narrow-Linewidth Laser at 1550 nm Using the Pound-Drever-Hall Stabilization Technique”, Thesis, submitted to Virginia Polytechnic Institute and State University, Blacksburg, Virginia, 2006, 92 pgs. |
Langeveld, C. J., “PDC Bit Dynamics”, a paper prepared for presentation the 1992 IADC/SPE Drilling Conference, Feb. 1992, pp. 227-241. |
Lau, John H., “Thermal Fatigue Life Prediction of Flip Chip Solder Joints by Fracture Mechanics Method”, Engineering Fracture Mechanics, vol. 45, No. 5, 1993, pp. 643-654. |
Lehnhoff, T. F. et al., “The Influence of Temperature Dependent Properties on Thermal Rock Fragmentation”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 12, 1975, pp. 255-260. |
Leong, K. H. et al., “Lasers and Beam Delivery for Rock Drilling”, Argonne National Laboratory, ANL/TD/TM03-01, 2003, pp. 1-35. |
Leong, K. H., “Modeling Laser Beam-Rock Interaction”, a report prepared for Department of Energy (http://www.doe.gov/bridge), 8 pages. |
Leung, M. et al., “Theoretical study of heat transfer with moving phase-change interface in thawing of frozen food”, Journal of Physics D: Applied Physics, vol. 38, 2005, pp. 477-482. |
Li, X. B. et al., “Experimental Investigation in the Breakage of Hard Rock by the PDC Cutters with Combined Action Modes”, Tunnelling and Underground Space Technology, vol. 16., 2001, pp. 107-114. |
Liddle, D. et al., “Cross Sector Decommissioning Workshop”, presentation, Mar. 23, 2011, 14 pages. |
Lima, R. S. et al., “Elastic ModulMeasurements via Laser-Ultrasonic and Knoop Indentation Techniques in Thermally Sprayed Coatings”, Journal of Thermal Spray Technology, vol. 14(1), 2005, pp. 52-60. |
Lin, Y. T., “The Impact of Bit Performance on Geothermal-Well Cost”, Sandia National Laboratories, SAND-81-1470C, 1981, pp. 1-6. |
Loland, K. E., “ContinuoDamage Model for Load-Response Estimation of Concrete”, Cement and Concrete Research, vol. 10, 1980, pp. 395-402. |
Lomov, I. N. et al., “Explosion in the Granite Field: Hardening and Softening Behavior in Rocks”, U.S. Department of Energy, Lawrence Livermore National Laboratory, 2001, pp. 1-7. |
Long, S. G. et al., “Thermal fatigue of particle reinforced metal-matrix composite induced by laser heating and mechanical load”, Composites Science and Technology, vol. 65, 2005, pp. 1391-1400. |
Lucia, F. J. et al., “Characterization of Diageneticaily Altered Carbonate Reservoirs, South Cowden Graybin Reservoir, West Texas”, a paper prepared for presentation at the 1996 SPE Annual Technical Conference and Exhibition, Oct. 1996, pp. 883-893. |
Luft, H. B. et al., “Development and Operation of a New Insulated Concentric Coiled Tubing String for ContinuoSteam Injection in Heavy Oil Production”, Conference Paper pubiished by Society of Petroleum Engineers on the Internet at: (http://www.onepetro.org/mslib/servlet/onepetropreview?id=00030322), on Aug. 8, 2012, 1 page. |
Lyons, K. David et al., “NETL Extreme Drilling Laboratory Studies High Pressure High Temperature Drilling Phenomena”, U.S. Department of Energy, National Energy Technology Laboratory, 2007, pp. 1-6. |
Manrique, E. J. et al., “EOR Field Experiences in Carbonate Reservoirs in the United States”, SPE Reservoir Evaluation & Engineering, Dec. 2007, pp. 667-886. |
Maqsood, A. et al., “Thermophysical Properties of PoroSandstones: Measurement and Comparative Study of Some Representative Thermal Conductivity Models”, International Journal of Thermophysics, vol. 26, No. 5, Sep. 2005, pp. 1617-1632. |
Marcuse, D., “Curvature Loss Formula for Optical Fibers”, J. Opt. Soc. Am., vol. 66, No. 3, 1978, pp. 218-220. |
Marshall, David B. et al., “Indentation of Brittle Materials”, Microindentation Techniques in Materials Science and Engineering, ASTM STP 889; American Society for Testing and Materials, 1986, pp. 26-46. |
Martin, C. D., “Seventeenth Canadian Geotechnical Coloquium: The Effect of Cohesion Loss and Stress Path on Brittle Rock Strength”, Canadian Geotechnical Journal, vol. 34, 1997, pp. 698-725. |
Martins, A. et al., “Modeling of Bend Losses in Single-Mode Optical Fibers”, Institutu de Telecomunicacoes, Portugal, 3 pages. |
Maurer, William C., “Advanced Drilling Techniques”, published by Petroleum Publishing Co., copyright 1980, 26 pgs. |
Maurer, William C., “Novel Drilling Techniques”, pubiished by Pergamon Press, UK, copyright 1968, pp. 1-64. |
Mazerov, Katie, “Bigger coil sizes, hybrid rigs, rotary steerable advances push coiled tubing drilling to next level”, Drilling Contractor, 2008, pp. 54-60. |
McElhenny, John E. et al., “Unique Characteristic Features of Stimulated Brillouin Scattering in Small-Core Photonic Crystal Fibers”, J. Opt. Soc. Am. B, vol. 25, No. 4, 2008, pp. 582-593. |
Medvedev, I. F. et al., “Optimum Force Characteristics of Rotary-Percussive Machines for Drilling Blast Holes”, Moscow, Translated from Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh, No. 1, 1967, pp. 77-80. |
Meister, S. et al., “Glass Fibers for Stimulated Brillouin Scattering and Phase Conjugation”, Laser and Particle Beams, vol. 25, 2007, pp. 15-21. |
Mejia-Rodriguez, G. et al., “Multi-Scale Materiai Modeling of Fracture and Crack Propagation”, Final Project Report in Multi-Scale Methods in Applied Mathematics, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, pp. 1-9. |
Mensa-Wilmot, G. et al., “New PDC Bit Technology, Improved Drillability Analysis, and Operational Practices Improve Drilling Performance in Hard and Highly HeterogeneoApplications”, a paper prepared for the 2004 SPE (Society of Petroleum Engineers) Eastern Regional Meeting, Sep. 2004, pp. 1-14. |
Mensa-Wilmot, Graham et al., “Advanced Cutting Structure Improves PDC Bit Performance in Hard and Abrasive Drilling Environments”, Society of Petroleum Engineers International, 2003, pp. 1-13. |
Messaoud, Louafi, “Influence of Fluids on the Essential Parameters of Rotary Percussive Drilling”, Laboratoire d'Environnement (Tébessa), vol. 14, 2009, pp. 1-8. |
Messica, A. et al., “Theory of Fiber-Optic Evanescent-Wave Spectroscopy and Sensor”, Applied Optics. vol. 35, No. 13, May 1, 1996, pp. 2274-2284. |
Mittelstaedt, E. et al., “A Noninvasive Method for Measuring the Velocity of Diffuse Hydrothermal Flow by Tracking Moving Refractive Index Anomalies”, Geochemistry Geophysics Geosystems, vol. 11, No. 10, Oct. 8, 2010, pp. 1-18. |
Moavenzadeh, F. et al., “Thin Disk Technique for Analyzing Fock Fractures Induced by Laser Irradiation”, a report prepared for the Department of Transportation under Contract C-85-65, May 1968, 91 pages. |
Mocofanescu, A. et al., “SBS threshold for single mode and multimode GRIN fibers in an all fiber configuration”, Optics Express, vol. 13, No. 6, 2005, pp. 2019-2024. |
Moradian, Z. A. et al., “Predicting the Uniaxial Compressive Strength and Static Young's Modulof Intact Sedimentary Rocks Using the Ultrasonic Test”, International Journal of Geomechanics, vol. 9, No. 1, 2009, pp. 14-19. |
Morozumi, Y. et al., “Growth and Structures of Surface Disturbances of a Round Liquid Jet in a Coaxial Airflow”, Fluid Dynamics Research, vol. 34, 2004, pp. 217-231. |
Multari, R. A. et al., “Effect of Sampling Geometry on Elemental Emissions in Laser-Induced Breakdown Spectroscopy”, Applied Spectroscopy, vol. 50, No. 12, 1996, pp. 1483-1499. |
Munro, R. G., “Effective Medium Theory of the Porosity Dependence of Bulk Moduli”, Communications of American Ceramic Society,vol. 84, No. 5, 2001, pp. 1190-1192. |
Muto, Shigeki et al., “Laser cutting for thick concrete by multi-pass technique”, Chinese Optics Letters, vol. 5 Supplement, 2007, pp. S39-S41. |
Myung, I. J., “Tutorial on Maximum Likelihood, Estimation”, Journal of Mathematical Psychology, vol. 47, 2003, pp. 90-100. |
Nadavi, I. Z. et al., “Laser heating of multilayer assembly and stress levels: elasto-plastic consideration”, Heat and Mass Transfer, vol. 40, 2003. pp, 25-32. |
Nara, Y. et al., “Sub-critical crack growth in anisotropic rock”, International Journal of Rock Mechanics and Mining Sciences, vol. 43, 2006, 437-453. |
Nemat-Nasser, S. et al., “Compression-Induced Nonplanar Crack Extension With Application to Splitting, Exfoliation, and Rockburst”, Journal of Geophysical Research, vol. 87, No. B8, 1982, pp. 6805-6821. |
Nikles, M. et al., “Brillouin Gem Spectrum Characterization in Single-Mode Optical Fibers”, Journal of Lightwave Technology, vol. 15, No. 10, Oct. 1997, pp. 1842-1851. |
Nimick, F. B., “Empirical Relationships Between Porosity and the Mechanical Properties of Tuff”, Key Questions in Rock Mechanics, Cundall et al. (eds), 1988, pp. 741-742. |
Nolen-Hoeksema, R., “Fracture Development and Mechnical Stratigraphy of Austin Chalk, Texas: Discussion”, a discussion for the American Association of Petroleum Geologists Bulletin, vol. 73, No. 8, Jun. 1989, pp. 792-793. |
O'Hare, Jim et al., “Design Index: A Systematic Method of PDC Drill-Bit Selection”, Society of Petroleum Engineers International, IADC/SPE Drilling Conference, 2000, pp. 1-15. |
Oglesby, K. et al., “Advanced Ultra High Speed Motor for Drilling”, a project update by Impact Technologies LLC for the Department of Energy, Sep. 12, 2005, 36 pages. |
Okon, P. et al., “Laser Welding of Aluminium Alloy 5083”, 21st International Congress on Applications of Lasers and Electro-Optics, 2002, pp. 1-9. |
Olsen, F. O., “Fundamental Mechanisms of Cutting Front Formation in Laser Cutting”, SPIE, vol. 2207, pp. 402-413. |
Ortega, Alfonso et al., “Frictional Heating and Convective Cooling of Polycrystalline Diamond Drag Tools During Rock Cutting”, Report No. SAND 82-0675c, Sandia National Laboratories, 1982, 23 pgs. |
Ortega, Alfonso et al., “Studies of the Frictional Heating of Polycrystalline Diamond Compact Drag Tools During Rock Cutting”, Sandia National Laboratories, SAND-80-2677, 1982, pp. 1-151. |
Ortiz, Blas et al., Improved Bit Stability Reduces Downhole Harmonics (Vibrations), International Association of Drilling Contractors/Society of Petroleum Engineers Inc., 1996, pp. 379-389. |
Ouyang, L. B. et al., “General Single Phase Wellbore Flow Model”, a report prepared for the COE/PETC, May 2, 1997, 51 pages. |
Palashchenko, Yuri A., “Pure Rolling of Bit Cones Doubles Performance”, I & Gas Journal, vol. 106, 2008, 8 pgs. |
Palchaev, D. K. et al., “Thermal Expansion of Silicon Carbide Materials”, Journal of Engineering Physics and Thermophysics, vol. 66, No. 8, 1994, 3 pages. |
Pardoen, T. et al., “An extended model for void growth and Coalescence”, Journal of the Mechanics and Physics of Solids, vol. 48, 2000, pp. 2467-2512. |
Park, Un-Chul et al, “Thermal Analysis of Laser Drilling Processes”, IEEE Journal of Quantum Electronics, 1972, vol. QK-8. No. 2, 1972, pp. 112-119. |
Parker, Richard A. et al., “Laser Drilling Effects of Beam Application Methods on Improving Rock Removal”, Society of Petroleum Engineers, SPE 84353, 2003, pp. 1-7. |
Pavlina, E. J. et al., “Correlation of Yield Strength and Tensile Strength with Hardness for Steels”, Journals of Materials Engineering and Performance, vol. 17, No. 6, 2008, pp. 888-893. |
Feebler, R. P. et al., “Formation Evaluation with Logs in the Deep Anadarko Basin”, SPE of AIME, 1972, 15 pages. |
Percussion Drilling Manual, by Smith Tools, 2002, 67 pgs. |
Phani, K. K. et al., “Pororsity Dependence of Ultrasonic Velocity and Elastic Modulin Sintered Uranium Dioxide—a discussion”, Journal of Materials Science Letters, vol. 5, 1986, pp. 427-430. |
Ping, Cao et al., “Testing study of subcritical crack growth rate and fracture toughness in different rocks”, Transactions of NonferroMetals Society of China, vol. 16, 2006, pp. 709-714. |
Plinninger, Dr. Ralf J. et al., “Wear Prediction in Hardrock Excavation Using the CERCHAR Abrasiveness Index (CAI)”, EUROCK 2004 & 53rd Geomechanics Colloquium, Schubert (ed.), VGE, 2004, pp. 1-6. |
Flinninger, Ralf J. et al., “Predicting Tool Wear in Drill and Blast”, Tunnels & Tunneling International Magazine, 2002, pp. 1-5. |
Polsky, Yarom et al., “Enhanced Geothermal Systems (EGS) Well Construction Technology Evaluation Report”, Sandia National Laboratories, Sandia Report, SAND2008-7866, 2008, pp. 1-108. |
Pooniwala, S. et al., “Lasers: The Next Bit”, a paper prepared for the presentation at the 2006 SPE (Society of Petroleum Engineers) Eastern Regional Meeting Oct. 2006, pp. 1-10. |
Pooniwala, Shahvir, “Lasers: The Next Bit”, Society of Petroleum Engineers, No. SPE 104223, 2006, 10 pgs. |
Porter, J. A. et al., “Cutting Thin Sheet Metal with a Water Jet Guided Laser Using VarioCutting Distances, Feed Speeds and Angles of Incidence”, Int. J. Adv. Manuf. Technol., vol. 33, 2007, pp. 961-967. |
Potyondy, D. O. et al., “A Bonded-particle model for rock”, International Journal of Rock Mechanics and Mining Sciences, vol. 41, 2004, pp. 1329-1364. |
Price, R. H. et al., “Analysis of the Elastic and Strength Properties of Yuccs Mountain tuff, Nevada”, 26th Symposium on Rock Mechanics, Jun. 1985, pp. 89-96. |
Qixian, Luo et al., “Using compression wave ultrasonic transducers to measure the velocity of surface waves and hence determine dynamic modulof elasticity for concrete”, Construction and Building Materials, vol. 10, No. 4, 1996, pp. 237-242. |
Radkte, Robert, “New High Strength and faster Drilling TSP Diamond Cutters”, Report by Technology International, Inc., DOE Award No. DE-FC26-97FT34368, 2006, 97 pgs. |
Rao, M. V. M. S. et al., “A Study of Progressive Failure of Rock Under Cyclic Loading by Ultrasonic and AE Monitoring Techniques”, Rock Mechanics and Rock Engineering, vol. 25. No. 4, 1992, pp. 237-251. |
Rauenzahn, R. M., “Analysis of Rock Mechanics and Gas Dynamics of Flame-Jet Thermal Spallation Drilling”, a dissertation for the degree of Doctor of Philosophy at Massachusettes Institute of Technology, Sep. 1986, pp. 1-524. |
Rauenzahn, R. M. et al., “Rock Failure Mechanisms of Flame-Jet Thermal Spallation Drilling—Theory and Experimental Testing”, Int. J. Rock Merch. Min. Sci. & Geomech. Abstr., vol. 26, No. 5, 1989, pp. 381-399. |
Rauenzahn, R. M., “Analysis of Rock Mechanics and Gas Dynamics of Flame-Jet Thermal Spallation Drilling”, Massachusetts Institute of Technology, submitted in partial fulfillment of doctorate degree, 1986 583 pgs. |
Raymond, David W., “PDC Bit Testing at Sandia Reveals Influence of Chatter in Hard-Rock Drilling”, Geothermal Resources Council Monthly Bulletin, SAND99-2655J, 1999, 7 pgs. |
Richter, D. et al., “Thermal Expansion Behavior of IgneoRocks”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 11, 1974, pp. 403-411. |
Rjken, P. et al., “Role of Shale Thickness on Vertical Connectivity of Fractures: Application of Crack-Bridging Theory to the Austin Chalk, Texas”, Tectonophysics, vol. 337 ,2001, pp. 117-133. |
Rosler, M., “Generalized Hermite Polynomials and the Heat Equation for Dunkl Operators”, a paper, while the date of the publication is unknown, it is beiieved to be prior to Aug. 19, 2009, pp. 1-24. |
Rossmanith, H. P. et al., “Wave Propagation, Damage Evolution, and Dynamic Fracture Extension. Part I. Percussion Drilling”, Materials Science, vol. 32, No. 3, 1996, pp. 350-358. |
Sachpazis, C. I, M. Sc., Ph. D., “Correlating Schmidt Hardness With Compressive Strength and Young's ModulOf Carbonate Rocks”, International Association of Engineering Geology, Bulletin, No. 42, 1990, pp. 75-83. |
Sano, Osam et al., “Acoustic Emission During Slow Crack Growth”, Department Mining and Mineral Engineering, NII-Electronic Library Service, 1980, pp. 381-388. |
Sattler, A. R., “Core Analysis in a Low Permeability Sandstone Reservoir: Results from the Multiwell Experiment”, a report by Sandia National Laboratories for the Department of Energy, Apr. 1989, 69 pages. |
Schaffer, C. B. et al., “Dynamics of Femtosecond Laser-Induced Breakdown in Wafer from Femtoseconds to Microseconds”, Optics Express, vol. 10, No. 3, Feb. 11, 2002, pp. 196-203. |
Schormair, Nik et al., “The influence of anisotropy on hard rock drilling and cutting”, The Geological Society of London, IAEG, Paper No. 491, 2006, pp. 1-11. |
Shannon, G. J. et al., “High power laser welding in hyperbaric gas and water environments”, Journal of Laser Applications, vol. 9, 1997, pp. 129-136. |
Shuja, S. Z. et al., “Laser heating of semi-infinite solid with consecutive pulses: Influence of materaial properties on temperature field”, Optics & Laser Technology, vol. 40, 2008, pp. 472-480. |
Simple Drilling Methods, WEDC Loughborough University, United Kingdom, 1995, 4 pgs. |
Smith, D., “Using Coupling Variables to Solve Compressible Flow, Multiphase Flow and Plasma Processing Problems”, COMSOL Users Conference 2006, 38 pages. |
Smith, E., “Crack Propagation at a Constant Crack Tip Stress Intensity Factor”, Int. Journal of Fracture, vol. 16, 1980, pp. R215-R218. |
Soeder, D. J. et al., “Pore Geometry in High- and Low-Permeability Sandstones, Travis Peak Formation, East Texas”, SPE Formation Evaluation, Dec. 1990, pp. 421-430. |
Solomon, A. D. et al., “Moving Boundary Problems in Phase Change Models Current Research Questions”, Engineering Physics and Mathematics Division, ACM Signum Newsletter, vol. 20, Issue 2, 1985, pp. 8-12. |
Sousa, Luis M. O. et al., “Influence of microfractures and porosity on the physico-mechanical properties and weathering of ornamental granites”, Engineering Geology, vol. 77, 2005, pp. 153-168. |
Stone, Charles M. et al., “Qualifications of a Computer Program for Drill String Dynamics”, Sandia National Laboratories, SAND-85-0633C, 1985, pp. 1-20. |
Stowell, J. F. W., “Characterization of Opening-Mode Fracture Systems in the Austin Chalk”, Gulf Coast Association of Geological Societies Transactions, vol. L1, 2001, pp. 313-320. |
Suarez, M. C. et al., “COMSOL in a New Tensorial Formulation of Non-Isothermal Poroelasticity”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009,2 pages. |
Suwamo, et al., “Dielectric Properties of Mixtures Between Mineral Oil and Natural Ester from Palm Oil”, WSEAS Transactions on Power Systems, vol. 3, Issue 2, Feb. 2008, pp. 37-46. |
Takarli, Mokhfi et al., “Damage in granite under heating/cooling cycles and water freeze-thaw condition”, International Journal of Rock Mechanics and Mining Sciences, vol. 45, 2008, pp. 1164-1175. |
Tanaka, K. et al., “The Generalized Relationship Between the Parameters C and m of Paris' Law for Fatigue Crack Growth”, Scripta Metallurgica, vol. 15, No. 3, 1981, pp. 259-264. |
Tang, C. A. et al., “Coupled analysis of flow, stress and damage (FSD) in rock failure”, International Journal of Rock Mechanics and Mining Sciences, vol. 39, 2002, pp. 477-489. |
Tao, Q. et al., “A Chemo-Poro-Thermoelastic Model for Stress/Pore Pressure Analysis around a Wellbore in Shale”, a paper prepared for presentation at the Symposium on Rock Mechanics (USRMS): Rock Mechanics for Energy, Mineral and Infrastracture Development in the Northern Regions, Jun. 2005, 7 pages. |
Thorsteinsson, Hiidigunnur et al., “The Impacts of Drilling and Reservoir Technology Advances on EGS Exploitation”, Proceedings, Thirty-Third Workshop on Geothermal Reservoir Engineering, Institute for Sustainable Energy, Environment, and Economy (ISEEE), 2008, pp. 1-14. |
Tuler, F. R. et al., “A Criterion for the Time Dependence of Dynamic Fracture”, The International Jopurnal of Fracture Mechanics, vol. 4, No. 4, Dec. 1968, pp. 431-437. |
Turner, D. et al., “New DC Motor for Downhole Drilling and Pumping Applications”, a paper prepared for presentation at the SPE/iCoTA Coiled Tubin Roundtable, Mar. 2001, pp. 1-7. |
Turner, D. R. et al., “The All Electric BHA: Recent Developments Toward an Intelligent Coiled-Tubing Drilling System”, a paper prepared for presentation at the 1999 SPE/ICoTA Coiled Tubing Roundtable, May 1999, pp. 1-10. |
U.S. Dept of Energy, “Chapter 6—Drilling Technology and Costs”, from Report for Yhe Future of Geothermal Energy, 2005, 53 pgs. |
U.S. Non-Provisional U.S. Appl. No. 12/840,978, filed Jul. 21, 2009, 61 pgs. |
Udd, E, et al., “Fiber Optic Distributed Sensing Systems for Harsh Aerospace Environments”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 12 pages. |
Valsangkar, A. J. et al., Stress-Strain Relationship for Empirical Equations of Creep in Rocks, Engineering Geology, Mar. 29, 1971, 5 pages. |
Vamado, S. G. et al., “The Design and Use of Polycrystalline Diamond Compact Drag Bits in the Geothermal Environment”, Society of Petroleum Engineers of AIME, SPE 8378, 1979, pp. 1-11. |
Wandera, C. et al., “Characterzaton of the Melt Removal Rate in Laser Cutting of Thick-Section Stainless Steel”, Journal of Laser Applications, vol. 22, No. 2, May 2010, pp. 62-70. |
Wandera, C., et al., “Inert Gas Cutting of Thick-Section Stainless Steel and Medium Section Aluminun Using a High Power Fiber Laser”, Journal of Chemical Physics, vol. 116, No. 4, Jan. 22, 2002, pp. 154-161. |
Wandera, C. et al., “Laser Power Requirement for Cutting of Thick-Section Steel and Effects of Processing Parameters on Mild Steel Cut Quality”, a paper accepted for publication in the Proceedings IMechE Part B, Journal of Engineering Manufacture, vol. 225, 2011, 23 pages. |
Wandera, C. et al., “Optimization of Parameters for Fiber Laser Cutting of 10mm Stainless Steel Plate”, a paper for publication in the Proceeding IMechE Part E, Journal of Engineering Manufacture, vol. 225, 2011, 22 pages. |
Waples, D. W. et al., “A Review and Evaluation of Specific Heat Capacities of Rocks, Minerals, and Subsurface Fluids. Part 1: Minerals and NonporoRocks”, Natural Resources Research, vol. 13, No. 2, Jun. 2004, pp. 97-122. |
Waples, D. W. et al., “A Review and Evaluation of Specific Heat Capacities of Rocks, Minerals, and Subsurface Fluids. Part 2: Fluids and PoroRocks”, Natural Resources Research, vol. 13 No. 2, Jun. 2004, pp. 123-130. |
Wen-gui, Cao et al., “Damage constituitive model for strain-softening rock based on normal distribution and its parameter determination”, J. Cent. South Univ. Technol., vol. 14, No. 5, 2007, pp. 719-724. |
Wiercigroch, M., “Dynamics of ultrasonic percussive drilling of hard rocks”, Journal of Sound and Vibration, vol. 280, 2005, pp. 739-757. |
Williams, R. E. et al., “Experiments in Thermal Spallation of VarioRocks”, Transactions of the ASME, vol. 118, 1996, pp. 2-8. |
Willis, David A. et al., “Heat transfer and phase change during picosecond laser ablation of nickel”, International Journal of Heat and Mass Transfer, vol. 45, 2002, pp. 3911-3918. |
Wong, Teng-fong et al., “Microcrack statistics, Weibull distribution and micromechanical modeling of compressive failure in rock”, Mechanics of Materials, vol. 38, 2006, pp. 664-681. |
Wood, Tom, “Dual Purpose COTD™ Rigs Establish New Operational Records”, Treme Coil Drilling Corp., Drilling Technology Without Borders, 2009, pp. 1-18. |
Xia, K. et al., “Effects of microstructures on dynamic compression of Barre granite”. International Journal of Rock Mechanics and Mining Sciences, vol. 45, 2008. pp. 879-887, available at www.sciencedirect.com. |
Xu, Z et al. “Modeling of Laser Spailation Drilling of Rocks fro gas- and Oilwell Driliing”, Society of Petroleum Engineers, SPE 95746, 2005, pp. 1-6. |
Xu, Z. et al., “Laser Rock Drilling by a Super-Pulsed CO2 Laser Beam”, a manuscript created for the Department of Energy, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 9 pages. |
Xu, Z. et al., “Laser Spallation of Rocks for Oil Well Drilling”, Proceedings of the 23rd International Congress on Applications of Lasers and Electro-Optics, 2004, pp. 1-6. |
Xu, Z. et al., “Modeling of Laser Spallation Drilling of Rocks for Gas-and Oilwell Driiling”, a paper prepared for the presentation at the 2005 SPE (Society of Petroleum Engineers) Annual Technical Conference and Exhibition, Oct. 2005, 6 pages. |
Xu, Z. et al., “Specific Energy of Pulsed Laser Rock Drilling”, Journal of Laser Applications, vol. 15, No. 1, Feb. 2003, pp. 25-30. |
Xu, Z. et al., “Specific Energy for Laser Removal of Rocks”, Proceedings of the 20th International Congress on Applications of Lasers & Electro-Optics, 2001, pp. 1-8. |
Xu, Z. et al., “Specific energy for pulsed laser rock drilling”, Journal of Laser Applications, vol. 15, No. 1, 2003, pp. 25-30. |
Xu, Zhiyue et al., “Laser Spallation of Rocks for Oil Well Drilling”, Proceedings of the 23rd international Congress on Applications of Lasers and Electro-Optics, 2004, pp. 1-6. |
Yabe, T. et al., “The Constrained Interpolation Profile Method for Multiphase Analysis”, Journal of Computational Physics, vol. 169, 2001, pp. 556-593. |
Yamshchikov, V. S. et al., “An Evaluation of the Microcrack Density of Rocks by Ultrasonic Velocimetric Method”, Moscow Mining Institute. (Translated from Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh), 1985, pp. 363-366. |
Yilbas, B. S. et al., “Laser short pulse heating: Influence of pulse intensity on temperature and stress fields”, Applied Surface Science, vol. 252, 2006, pp. 8428-6437. |
Yilbas, B. S. et al., “Laser treatment of aluminum surface: Analysis of thermal stress field in the irradiated region”: Journal of Materials Processing Technology, vol. 209, 2009. pp. 77-88. |
Yilbas, B. S. et al., “Nano-second laser pulse heating and assisting gas jet considerations”, International Journal of Machine Tools & Manufacture, vol. 40, 2000, pp. 1023-1038. |
Yilbas, B. S. et al., “Repetitive laser pulse heating with a convective boundary condition at the surface”, Journal of Physics D: Applied Physics, vol. 34, 2001, pp. 222-231. |
Yun, Yingwei et al., “Thermal Stress Distribution in Thick Wall Cylinder Under Thermal Shock”, Journal of Pressure Vessel Technology, Transactions of the ASME, 2009, vol. 131, pp. 1-6. |
Zeuch, D. H. et al., “Rock Breakage Mechanisms With a PDC Cutter”, a paper prepared for presentation at the 60th Annual Technical Conference and Exhibition of the Society of Petroleum Engineers, Sep. 1985, 12 pages. |
Zeuch, D.H. et al., “Rock Breakage Mechanism Wirt a PDC Cutter”, Society of Petroleum Engineers, 6th Annual Technical Conference, Las Vegas, Sep. 22-25, 1985, 11 pgs. |
Zhai, Yue et al., “Dynamic failure analysis on granite under uniaxial impact compressive load”, Front. Archit. Civ. Eng. China, vol. 2. No. 3, 2008, pp. 253-260. |
Zheleznov, D. S. et al., “Faraday Rotators With Short Magneto-Optical Elements for 50-kW Laser Power”, IEEE Journal of Quantum Electronics, vol. 43, No. 6, Jun. 2007, pp. 451-457. |
Zhou, T. et al., “Analysis of Stimulated Brillouin Scattering in Multi-Mode Fiber by Numerical Solution”, Journal of Zhejiang University of Science, vol. 4 No. 3, May-Jun. 2003, pp. 254-257. |
Zhou, X.P., “Microcrack Interaction Brittle Rock Subjected to Uniaxial Tensile Loads”, Theoretical and Applied Fracture Mechanics, vol. 47, 2007, pp. 68-76. |
Zhou, Zehua et al., “A New Thermal-Shock-Resistance Model for Ceramics: Establishment and validation”, Materials Science and Engineering, A 405, 2005, pp. 272-276. |
Zhu, Dongming et al., “Influence of High Cycle Thermal Loads on Thermal Fatigue Behavior of Thick Thermal Barrier Coatings”, National Aeronautics and Space Administration, Army Research Laboratory, Technical Report ARL-TR-1341, NASA TP-3676, 1997, pp. 1-50. |
Zhu, Dongming et al., “Investigation of thermal fatigue behavior of thermal barrier coating systems”, Surface and Coatings Technology, vol. 94-95, 1997, pp. 94-101. |
Zhu, Dongming et al., “Investigation of Thermal High Cycle and Low Cycle Fatigue Mechanisms of Thick Thermal Barrier Coatings”, National Aeronautics and Space Administration, Lewis Research Center, NASA/TM-1998-206633, 1998, pp. 1-31. |
Zhu, Dongming et al., “Thermophysical and Thermomechanical Properties of Thermal Barrier Coating Systems”, National Aeronautics and Space Administration, Glenn Research Center, NASA/TM-2000-210237, 2000, pp. 1-22. |
Zhu, X. et al., “High-Power ZBLAN Glass Fiber Lasers: Review and Prospect”, Advances in OptoElectronics, vol. 2010, pp. 1-23. |
A Built-for-Purpose Coiled Tubing Rig, by Schulumberger Wells, No. DE-PS26-03NT15474, 2006, 1 pg. |
“Chapter I—Laser-Assisted Rock-Cutting Tests”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 64 pages. |
“Chapter 7: Energy Conversion Systems—Options and Issues”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, pp. 7-1 to 7-32 and table of contents page. |
“Cross Process Innovations”, Obtained from the Internat at: http://www.mrl.columbia.edu/ntm/CrossProcess/CrossProcessSect5.htm, on Feb. 2, 2010, 11 pages. |
“Fourier Series, Generalized Functions, Laplace Transform”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 6 pages. |
“Introduction to Optical Liquids”, published by Cargille-Sacher Laboratories Inc., Obtained from the Internet at: http://www.cargille.com/opticalintro.shtml, on Dec. 23, 2008. |
“Laser Drilling”, Oil & Natural Gas Projects (Exploration & Production Technologies) Technical Paper, Dept. of Energy, Jul. 2007, 3 pages. |
“Leaders in Industry Luncheon”, IPAA & TIPRO, Jul. 8, 2009, 19 pages. |
“Measurement and Control of Abrasive Water-Jet Velocity”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 8 pages. |
“NonhomogeneoPDE—Heat Equation with a Forcing Term”, a lecture, 2010, 6 pages. |
“Performance Indicators for Geothermal Power Plants”, prepared by International Geothermal Association for World Energy Council Working Group on Performance of Renewable Energy Plants, author unknown, Mar. 2011, 7 pages. |
“Rock Mechanics and Rock Engineering”, publisher unknown, while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 69 pages. |
“Shock Tube”, Cosmol MultiPhysics 3.5a, 2008, 5 pages. |
“Silicone Fluids: Stable, Inert Media”, Gelest, Inc., while the date of the publication is unknown, it is believed to be prior to Aug. 19, 2009, 27 pages. |
“Stimulated Brillouin Scattering (SBS) in Optical Fibers”, Centro de Pesquisa em Optica e Fotonica, Obtained from the Internet at: http://cepof.ifi.unicamp.br/index.php . . . ), on Jun. 25, 2012, 2 pages. |
“Underwater Laser Cutting”, TWI Ltd, May/Jun. 2011, 2 pages. |
Utility U.S. Appl. No. 13/768,149, filed Feb. 15, 2013, 27 pages. |
Utility U.S. Appl. No. 13/777,650, filed Feb. 26, 2013, 73 pages. |
Utility U.S. Appl. No. 13/782,869, filed Mar. 1, 2013, 80 pages. |
Utility U.S. Appl. No. 13/782,942, filed Mar. 1, 2013, 81 pages. |
Utility U.S. Appl. No. 13/800,559, filed Mar. 13, 2013, 73 pages. |
Utility U.S. Appl. No. 13/800,820, filed Mar. 13, 2013, 73 pages. |
Utility U.S. Appl. No. 13/800,879, filed Mar. 13, 2013, 73 pages. |
Utility U.S. Appl. No. 13/800,933, filed Mar. 13, 2013, 73 pages. |
Utility U.S. Appl. No. 13/849,831, filed Mar. 25, 2013, 83 pages. |
Office Action from JP Application No. 2011-551172 dated Sep. 17, 2013. |
Office Action from JP Application No. 2011-523959 dated Aug. 27, 2013. |
Office Action regarding corresponding Chinese Patent Application 200980141304.7 dated Mar. 5, 2013, 6 pages with English-language translation, 11 pages. |
U.S. Appl. No. 13/366,882, filed Feb. 6, 2012, McKay et al. |
Related utility application assigned U.S. Appl. No. 13/777,650, filed Feb. 26, 2013, 73 pages. |
Related utility application assigned U.S. Appl. No. 13/800,559, filed Mar. 13, 2013, 73 pages. |
Related utility application assigned U.S. Appl. No. 13/800,820, filed Mar. 13, 2013, 73 pages. |
Related utility application assigned U.S. Appl. No. 13/800,879, filed Mar. 13, 2013, 73 pages. |
Related utility application assigned U.S. Appl. No. 13/800,933, filed on Mar. 13, 2013, 73 pages. |
Related utility application assigned U.S. Appl. No. 13/849,831, filed Mar. 25, 2013, 77 pages. |
Abousleiman, Y. et al., “Poroelastic Solution of an Inclined Borehole in a Transversely Isotropic Medium”, Rock Mechanics, Daemen & Schultz (eds). 1995, pp. 313-318. |
Albertson, M. L. et al., “Diffusion of Submerged Jets”, a paper for the American Society of Civil Engineers, Nov. 5, 1862, pp. 1571-1596. |
Anovitz, L. M. et al., “A New Approach to Quantification of Metamorphism Using Ultra-Small and Small Angle Neutron Scattering”, Geochimica at Cosmochimica Acta, vol. 73, 2009, pp. 7303-7324. |
ASTM International, “Standard Test Method for Thermal Conductivity of Solids by Means of the Guarded-Comparative-Longitudinal Heat Flow Technique”, Standard under the fixed Designation E1225-09, 2009, pp. 1-9. |
Atkinson, B. K., “Introduction to Fracture Mechanics and lts Geophysical Applications”, Fracture Mechanics of Rock, 1987, pp. 1-26. |
Baird, J. A. et al., “Analyzing the Dynamic Behavior of Downhole Equipment During Drilling”, US government Sandia Report, SAND-84-0758C, DE84 008840, 7 pages. |
Birkholzer, J. T. et al., “The Impact of Fracture—Matrix Interaction on Thermal-Hydrological Conditions in Heated Fractured Rock”, an origial research paper published online http://vzy.scijournals.org/cgi/content/full/5/2/657, May 26, 2006, 27 pages. |
Boechat, A. A. P. et al., “Bend Loss in Large Core Multimode Optical Fiber Beam Delivery Systems”, Applied Optics., vol. 30 No. 3, Jan. 20, 1991, pp. 321-327. |
Cone, C., “Case History of the University Block 9 (Wolfcamp) Field-Gas-Water Injection Secondary Recovery Project”, Journal of Petroleum Technology, Dec. 1970, pp. 1485-1491. |
Cooper, R., “Coiled Tubing Deployed ESPs Utilizing Internally Installed Power Cable—A Project Update”, a paper prepared by SPE (Society of Petroleum Engineers) Program Committee for presentationat the 2nd North American Coiled Tubing Roundtable, SPE 38406, Apr. 1997, pp. 1-6. |
Cruden, D. M., “The Static Fatigue of Brittle Rock Under Uniaxial Compression”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., vol. 11, 1974, pp. 67-73. |
da Silva, B. M. G., “Modeling of Crack Initiation, Propagation and Coalescence in Rocks”, a thesis for the degree of Master of Science in Civil and Environmental Engineering at the Massachusetts Institute of Technology, Sep. 2009, pp. 1-358. |
Damzen, M. J. et al., “Stimulated Brillion Scattering”, Chapter 8—SBS in Optical Fibres, OP Publishing Ltd, Published Institute of Physics, London, England, 2003, pp. 137-153. |
Degallaix, J. et al., “Simulation of Bulk-Absorption Thermal Lensing in Transmissive Optics of Gravitation Waves Detector”, Appl. Phys., B77, 2003, pp. 409-414. |
Dimotakis, P. E. et al., “Flow Structure and Optical Beam Propagation in High-Reynolds-Number Gas-Phase Shear Layers and Jets”, J. Fluid Mech., vol. 433, 2001, pp. 105-134. |
Dole, L. et al., “Cost-Effective Cementitious Material Compatible with Yucca Mountain Repository Geochemistry”, a paper prepared by Oak Ridge National Laboratory for the US Department of Energy, No. ORNL/TM-2004/296, Dec. 2004, 128 pages. |
Dutton, S. P. et al., “Evolution of Porosity and Permeability in the Lower Cretaceous Travis Peak Formation, East Texas”, The American Association of Petroleum Geologist Bulletin, vol. 76, No. 2, Feb. 1992, pp. 252-269. |
Ehrenberg, S. N. et al., “Porosity-Permeability Relationship in Interlayered Limestone—Dolostone Reservoir”, The American Association of Petroleum Geologists Bulletin, vol. 90, No. 1, Jan. 2006, pp. 91-114. |
Fertl, W. H. at al., “Spectral Gamma-Ray Logging in the Texas Austin Chalk Trend”, SPE of AIME, a paper for Journal of Petroleum Technology, Mar. 1980, pp. 481-488. |
Fuerschbach, P. W. et al., “Understanding Metal Vaporization from Laser Welding”, Sandia Report No. SAND-2003-3490, a report prepared for DOE Sep. 2003, pp. 1-70. |
Gardner, R. D. et al., “Flourescent Dye Penetrants Applied to Rock Fractures”, Int J. Rock Mech. Min. Sci., vol. 5, 1968, pp. 155-158 with 2 additional pages. |
Graves, R. M. et al., “StarWars Laser Technology Applied to Drilling and Completing Gas Wells”, SPE, No. 49259, a paper prepared for presentation at the 1998 SPE Annual Technical Conference and Exhibition, 1998, pp. 761-770. |
Grigoryan, V., “Separathion of variables: Neumann Condition”, a lecture for Math 124A, Dec. 1, 2009, pp. 1-3. |
Guo, B. et al., “Chebyshev Rational Spectral and Pseudospectral Methods on a Semi-infinite Interval”, Int. J. Numer. Meth. Engng, vol. 63, 2002, pp. 66-84. |
Hammer, D. X. et al., “Shielding Properties of Laser-Induced Breakdown in Water for Pulse Durations from 5 ns to 125 fs”Applied Optics, vol. 36, No. 22, Aug. 1, 1997, pp. 5630-5640. |
Hareland, G. et al., “Drag-Bit Model Including Wear”, SPE, No. 26957, a paper prepared for presentation at the Latin American/Caribbean Petroleum Engineering Conference, Apr. 1994, pp. 657-667. |
Hashida, T. et al., “Numerical Simulation with Experimental Verification of the Fracture Behavior in Granite Under Confining Pressures based on the Tension-Softening Model”International Journal of Fracture, vol. 59, 1993, pp. 227-244. |
Howells, G., “Super-Water [R] Jetting Applications from 1974 to 1999”, paper presented st the Proceedings of the 10th American Waterjet Confeence in Houston, Texas, 1909, 25 pages. |
Huang, H. et al., “Intrinsic Length Scales in Tool-Rock Interaction”, International Journal of Geomechanics, Jan./Feb. 2008; pp. 39-44. |
Imbt, W. C. et al., “Porosity in Limestone and Dolomite Petroleum Reservoirs”, paper presented at the Mid Continent District, Division of Production, Oklahoma City, Oklahoma, Jun. 1946, pp. 364-372. |
Kim, C. B. et al., “Measurement of the Refractive Index of Liquids at 1.3 and 1.5 Micron Using a Fibre Optic Fresnel Ratio Meter”, Meas. Sci. Technol., vol. 5, 2004, pp. 1683-1686. |
Kiwata, T. et al., “Flow Visualization and Characteristics of a Coaxial Jet with a Tabbed Annular Nozzle”, JSME International Journal Series B, vol. 49, No. 4, 2006, 906-913. |
Agrawal, Govind P., “Nonlinear Fiber Optics”, Chap. 9, Fourth Edition, Academic Press copyright 2007. |
McElhenny, John E. et al., “Unique Characteristic Features of Stimulated Brillouin Scattering in Small-Core Photonic Crystal Fibers”, J. Opt. Soc. Am. B. vol. 25, No. 4, 2008, pp. 582-593. |
Mocofanescu, A. et al., “SBS threshold for single mode and multimode GRIN fibers in en all fiber configuration”, Optics Express, vol. 13, No. 6, 2005, pp. 2019-2024. |
U.S. Non-Provisional U.S. Appl. No. 12/706,576, filed Feb. 16, 2010 28 pgs. |
Agrawal Dinesh et al., “Microstructural by TEM of WG/Co composites Prepared by Conventional and Microwave Processes”, Materials Research Lab, The Pennsylvania State University, 15th International Plansee Seminar, vol. 2, , 2001, pp. 677-684. |
Ashby, M. F. et al., “The Failure of Brittle Solids Containing Small Cracks Under Compressive Stress States”, Acta Metall., vol. 34, No. 3, 1986, pp. 497-510. |
Baird, Jerold et al., Phase 1 Theoretical Description, A Geological Formation Drill String Dynamic Interaction Finite Element Program (GEODYN), Sandia National Laboratories, Report No. Sand-84-7101-1984, 196 pgs. |
BDM Corporation, Geothermal Completion Technology Life-Cycle Cost Model (GECOM), Sandia National Laboratories, for the U.S. Dept. of Energy, vols. 1 and 2, 1982, 222 pgs. |
Browning, J. A. et al., “Recent Advances in Flame Jet Working of Minerals”7th Symposium on Rock Mechanics, Pennsylvania State Univ., 1965, pp. 281-313. |
Cardenas, R., “Protected Polycrystalline Diamond Compact Bits for Hard Rock Drilling”, Report No. DOE-99049-1361, U.S. Department of Energy, 2000, pp. 1-79. |
Close, F et al., “Successful Drilling of Basalt in a West of Shetland Deepwater Discovery”; SPE International 96575, Society of Petroleum Engineers, 2006, pp. 1-10. |
Cogotsi, G. A. et al., “Use of Nondestructive Testing Methods in Evaluation of Thermal Damage for Ceramics Under Conditions of Nonstationary Thermal Effects”, Institute of Strength Problems, Academy of Science, of the Ukrainian SSR, 1985, pp. 52-56. |
De Guire, Mark R., “Thermal Expansion Coefficient (start)”, EMSE 201—Introduction to Materials Science & Engineering, 2003 pp. 15.1-15.15. |
Dinçer, Ismail et al., “Correlation between Schmidt hardness, uniaxial compressive strength and Young's modulus for andesites, basalts and tuffs”, Bull Eng Geol Env, vol. 63, 2004, pp. 141-148. |
Dunn, James C., “Geothermal Technology Development at Sandia”, Geothermal Research Division Sandia National Laboratories, 1987, pp. 1-6. |
Eighmy, T. T. et al., “Microfracture Surface Charaterizatons: Implications to In Situ Remedial Methods in Fractured Rock”, Bedrock Bioremediation Centor, Final Report, National Risk Management Research Laboratory, Office of Research and Development, U. S. Environmental Protection Agency, EPA/600/R-05/121, 2006, pp. 1-99. |
Elsayed, M.A et al., “Measurement and analysis of Chatter in a Compliant Model of a Drillstring Equipped With a PDC Bit”, Mechanical Engineering Dept., University of Southwestern Louisiana and Sandia National Laboratories, 2000, pp. 1-10. |
Finger, John T. et al., “PDC Bit Research at Sandia National Laboratories”, Sandia Report, Geothermal Research Division 6252, Sandia National Laboratories, SAND89-0079-UC-253, 1989, pp. 1-88. |
Gahan, Brian C. et al. “Efficient of Downhole Pressure Conditions on High-Power Laser Perforation”, Society of Petroleum Engineers, SPE 97093, 2005, pp, 1-7. |
Gahan, B. C. et al., “Laser Drilling: Determination of Energy Required to Remove Rock”, Society of Petroleum Engineers International, SPE 71466, 2001, pp. 1-11. |
Glowka, David A., “Design Considerations for a Hard-Rock PDC Drill Bit”, Geothermal Technology Development Division 6241, Sandia National Laboratories, SAND-85-0666C, DE85 006313, 1985, pp. 1-23. |
Glowka, David A., “Development of a Method for Predicting the Performance and Wear of PDC Drill Bits”, Sandia National Laboratories, SAND86-1745-UC-66c, 1987, 1-206. |
Gurarie, V. N., “Stress resistance parameters of brittle solids under laser/plasma heating”, Materials Science and Engineering, vol. A288, 2000, pp. 168-172. |
Hall, Kevin, “The, role of thermal stress fatigue in the breakdown of rock in cold regions”, Geomorphology, vol. 31, 1999, pp. 47-63. |
Healy, Thomas E., “Fatigue Crack Growth in Lithium Hydride”; Lawrence Livermore National Laboratory, 1993, pp. 1-32. |
Hettema, M. H. H. et al., “The Influence of Steam Pressure on Thermal Spalling of Sedimentary Rock: Theory and Experiments”, Int. J. Rock Mech. Min. Sci., vol. 35, No. 1, 1998 pp. 3-15. |
Hibbs, Louis E. et al., “Wear Machanisms for Polycrystalline-Diamond Compacts as Utilized fro Drilling in Geothermal Environments”, Sandia National Laboratories, for The United States Government, Report No. SAND-82/7213, 1983, 287 pgs. |
Hoek, E., “Fracture of Anisotropic Rock”, Journal of the South African Institute of Mining and Metallurgy, vol. 64, No. 10, 1964, pp. 501-523. |
Hoover, Ed R. et al., “Failure Mechanisms of Polycrystalline-Diamond Compact Drill Bits in Geothermal Environments”, Sandia Report, Sandia National Laboratories, SAND81-1404, 1981, pp. 1-35. |
Huff, C. F. et. al., “Recent Developments in Polycrystalline Diamond-Drill-Bit Design”, Drilling Technology Division-4741, Sandia National Laboratories, 1980, pp. 1-29. |
Jimeno, Carlos Lopez et al., Drilling and Blasting of Rocks, Balkerna Publishers, 1995, 30 pgs. |
Kelsey, James R., “Drilling Technology/GDO”, Sandia National Laboratories, SAND-85-1866c, DE85 017231, 1985, pp. 1-7. |
Khan, Ovais U et al., “Laser heating of sheet metal and thermal stress development”, Journal of Materials Processing Technology, vol. 156-156, 2004, pp. 2045-2050. |
Kim, K. R. et al., “CO2 laser-plume interaction in materials processing”, Journal of Applied Physics, vol. 89, No. 1, 2001, pp. 681-688. |
Klotz, K. et al., “Coatings with intrinsic stress profile: Refined creep analysis of (Ti,A1)N and cracking due to cyclic laser heating”, Thin Solid Films, vol. 496, 2006, pp. 469-474. |
Kujawski Daniel, “A fatigue crack driving force parameter with load ratio effects”, International Journal of Fatigue, vol. 23, 2001, pp. S239-S246. |
Lacy, Lewis L., “Dynamic Rock Mechanics Testing for Optimizer Fracture Designs”, Society of Petroleum Engineers International, Annual Technical Conference and Exhibition, 1997, pp. 23-36. |
Lau, John H., “Thermal Fatigue Life Prediction of Flip Chip Solder Joints by Fracture Mechanics Method”, Engineering Fracture Mechanics, vol. 45, No. 5, 1993 pp. 643-654. |
Leung, M. et al., “Theoretical study of heat transfer with moving phase-change interface in thawing of frozen food”, Journal of Physics D: Applied Physics, vol. 38, 2008, pp. 477-482. |
Lima, R. S. et al., “Elastic Modulus Measurements via Laser-Ultrasonic and Knoop Indentation Techniques in Thermally Sprayed Coatings”, Journal of Thermal Spray Technology, vol. 14(1), 2005, pp. 52-60. |
Lyons, K. David et al., “NETL Extreme Drilling Laboratory Studies High Pressure High Temperature Drilling Phenomena”, U.S. Department of Energy, National Energy Technology Laboratory, 2007, pp. 1-8. |
Marhsall, David B. et al., “Indentation of Brittle Materials”, Microindentation Techniques in Materials Science and Engineering, ASTM STP 889; American Society for Testing and Materials, 1986, pp. 26-46. |
Maurer, William C., “Novel Drilling Techniques”, published by Pergamon Press, UK, copyright 1968, pp. 1-64. |
Mazerov, Katie, “Bigger coil Sizes, hybrid rigs, rotary steerable. advances push coiled tubing drilling to next level”, Drilling Contractor, 2008, pp. 54-60. |
Medvedev, I. F. et al., “Optimum Force Characteristics of Rotary-Percussive Machines for Drilling Blast Holes”, Moscow, Translated from Fiziko-Tekhnicheskie Problemly Razrabolki Poleznykh Iskopaemykh, No. 1, 1967, pp. 77-80. |
Moradian, Z. A et al., “Predicting the Uniaxial Compressive Strength and Static Young's Modulus of Intact Sedimentary Rocks Using the Ultrasonic Test”, International Journal of Geomechanics, vol. 9, No. 1, 2009, pp. 14-19. |
Naqavi, I. Z. et al., “Laser heating of multilayer assembly and stress levels: elasto-plastic consideration”, Heat and Mass Transfer, vol. 40, 2003, pp. 25-32. |
Nara Y. et al., “Sub-critical crack growth in anisotropic rock”, International Journal of Rock Mechanics and Mining Sciences, vol. 43, 2006, pp. 437-453. |
Nemat-Nasser, S. et al., “Compression-Induced Nonplanar Crack Extenslon With Appilcation to Splitting, Exfoliation, and Rockburst”, Journal of Geophysical Research, vol. 87, No. B8, 1982, pp. 6805-6821. |
Ortega, Alfonso et al., “Frictional Heating and Convective Cooling of Polycrystalline Diamond Drag Tools During Rock Cutting”, Report No. SAND 52-0675c, Sandia National Laboratories, 1982, 23 pgs. |
Ortega, Alfonso et al., “Studies of the Frictional Heating of Polycrystalline Diamond Compact Drag Tools During Rock Cutting”, Sandia National Laboratories, SAND-80-2677, 1987, pp. 1-151. |
Park, Un-Chul et al., “Thermal Analysis of Laser Drilling Processes”, IEEE Journal of Quantum Electronics, 1972, vol. QK-8, No. 2, 1972, pp. 112-119. |
Ping, CAO et al., “Testing study of subcritical crack growth rate and fracture toughness in difference rocks”, Transactions of Nonferrous Metals Society of China, vol. 16, 2006, pp. 709-714. |
Plinninger, Ralf J. et al., “Predicting Tool Wear in Drill and Blast”, Tunnels & Tunneling International Magazine, 2002, pp. 1-5. |
Qixian, Luo et al., “Using compression wave ultrasonic transducers to measure the velocity of surface waves and hence determine dynamic modulus of elasticity for concrete”, Construction and Building Materials, vol. 10, No. 4, 1996, pp. 237-242. |
Rauenzahn, R. M., “Analysis of Rock Mechanics and Gas Dynamics of Flame-Jet Thermal Spallation Drilling”, Massachusetts Institute of Technology, submitted in partial fulfillment of doctorate degree, 1986 582 pgs. |
Rossmanith, H. P. et al., “Wave Propagation, Damage Evolution, and Dynamic Fracture Extension. Part I Percussion Drilling”, Materials Science, vol. 32, No. 3, 1996, pp. 350-358. |
Sachpazis, C. I, M. Sc., Ph. D., “Correlating Schmidt Hardness With Compressive Strength and Young's Modulus of Carbonate Rocks”, International Association of Engineering Geology, Bulletin, No. 42, 1990, pp. 75-83. |
Schormair, Nik et al., “The influence of anisotropy on hard rock drilling and cutting”, The Geological Society of London, IAEG, Paper No. 491, 2906, pp. 1-11. |
Sousa, Luis M. O. et al., “Influence of microfractures and porosity on the physico-mechanical properties and weathering of ornamental granites”, Engineering Geology, vol. 77, 2005, 153-168. |
Stone, Charles M. et al., “Qualification of a Computer Program for Drill String Dynamics”, Sandia National Laboratories, SAND-85-0633C, 1985, pp. 1-20. |
Tanaka, K. et al., “Generalized Relationship Between the Parameters C and m of Paris' Law for Fatigue Crack Growth”, Scripta Metallurgica, vol. 15 No. 3, 1981, pp. 259-264. |
Tang, C. A et al., “Coupled analysis of flow, stress and damage (FSD) in rock failure”, International Journal of Rock Mechanics and Mining Sciences, vol. 39, 2002, pp. 477-489. |
Thorsteinsson, Hildigunnur et al., “The Impacts of Drilling and Reservoir Technology Advances on EGS Exploitation”, Proceedings, Thirty-Third Workshop on Geothermal Reservoir Engineering, Institute for Sustainable Energy, Environment, and Economy (ISEEE), 2008, pp. 1-14. |
U.S. Dept of Energy, “Chapter 6—Drilling Technology and Costs”, from Report for the Future of Geothermal Energy, 2005, 53 pgs. |
Varnado, S. G. et al., “The Design and Use of Polycrystalline Diamond Compact Drag Bits in the Geothermal Environment”, Society of Petroleum Engineers of AIME, SPE 8378, 1979, pp. 1-11. |
Wen-gui, CAO et al., “Damage constitultive model for strain-softening rock based on normal distribution and its parameter determination”, J. Cent. South Univ. Technol., vol. 14, No. 5, 2007, No. 719-724. |
Williams, R. E. et al., “Experiments in Thermal Spallation of Various Rocks”, Transactions of the ASME, vol. 118, 1996, pp. 2-8. |
Xia, K. et al., “Effects of microstructures on dynamic compression of Barre granite”, International Journal of Rock Mechanics and Mining Sciences, vol. 45, 2008, pp. 879-887, available at: www.sciencedirect.com. |
Xu, Z et al. “Modeling of Laser Spallation Drilling of Rocks fro gas- and Oilwell Drilling”, Society of Petroleum Engineers, SPE 95746, 2005, pp. 1-6. |
Yamshchikov, V. S. et al., “An Evaluation of the Microcrack Density of Rock by Ultrasonic Velocimetric Method”, Moscow Mining Institute. (Translated from Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh), 1985, pp. 363-366. |
Yibas, B. S. et al., “Laser short pulse heating: Influence of pulse intensity on temperature and stress fields”, Applied Surface Science, vol. 252, 2006, pp. 8428-8437. |
Yilbas, B. S. et al., “Laser treatment of aluminum surface: Analysis of thermal stress field in the irradiated region”, Journal of Materials Processing Technology, vol. 209, 2009, pp. 77-88. |
Zeuch, D.H. et al., “Rock Breakage Mechanism Wirt A PDC Cutter”, Society of Petroleum Engineers, 60th Annual Technical Conference, Las Vegas, Sep. 22-25, 1985, 11 pgs. |
Zhai, Yue et al., “Dynamic failure analysis on granite under uniaxial impact compressive load”, Front. Archit. Civ. Eng. China, vol. 2, No. 3, 2008, pp. 253-260. |
Zhu, Dongming et al., “Influence of High Cycle Thermal Loads on Thermal Fatigue Behavior of Thick Thermal Barrier Coatings”, National Aeronautics and Space Administration, Army Research Laboratory, Technical Report ARL-TR-1341, NASA TP-3679, 1997, pp. 1-50. |
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