Claims
- 1. An improved drill bit for use in drilling operations in a wellbore, comprising:a bit body including a plurality of bit legs, each supporting a rolling cone cutter; a coupling member formed at an upper shank portion of said bit body; at least one sensor for monitoring at least one condition of said improved drill bit during drilling operations; an electronics bay portion defined in-part by said upper shank portion of said bit body for housing at least one monitoring circuit; and wherein said at least one sensor is an annular capacitor disposed within a lubrication pathway.
- 2. An improved drill bit for use in drilling a wellbore comprising:a bit body including a plurality of bit legs, each supporting a rolling cone cutter; a coupling member formed at an upper shank portion of said bit body; at least one sensor for monitoring at least one condition of said improved drill bit during drilling operations; an electronics bay portion defined in-part by said upper shank portion of said bit body for housing at least one monitoring circuit; a battery cavity disposed in at least one of said bit legs; a conduit extending from said electronics bay portion to said battery cavity; a battery cavity cap member for enclosing said battery cavity; and a means for sealing said battery cavity cap member against said at least one of said bit legs, such that said battery cavity is fluid tight.
- 3. The improved drill bit according to claim 2, wherein said means for sealing said battery cavity cap member against said at least one of said bit legs comprises:a seal disposed between said battery cavity cap member and said at least one of said bit legs; and a retaining ring operably associated with said battery cavity cap member for securing said battery cavity cap member in a fluid tight seal against said at least one of said bit legs.
- 4. An improved drill bit for use in drilling operations in a wellbore, comprising:a bit body including a plurality of bit legs, each supporting a rolling cone cutter; a coupling member formed at an upper shank portion of said bit body; at least one sensor for monitoring at least one condition of said improved drill bit during drilling operations; an electronics bay portion defined in-part by said upper shank portion of said bit body for housing at least one monitoring circuit; and a generally annular cap member disposed adjacent to said upper shank portion, said cap member further defining said electronics bay portion; and a means for sealing said cap member against said upper shank portion, such that said electronics bay portion is fluid tight.
- 5. The improved drill bit according to claim 4, wherein said means for sealing said cap member against said upper shank portion comprises:a first groove in said cap member for receiving a first seal, said first groove being located above said electronics bay portion; a first seal disposed in said first groove, said first seal providing a fluid tight seal between said upper shank portion and said cap member; a second groove in said cap member for receiving a second seal, said second groove being located below said electronics bay portion; and a second seal disposed in said second groove, said second seal providing a fluid tight seal between said upper shank portion and said cap member.
- 6. The improved drill bit according to claim 4, wherein said means for sealing said cap member against said upper shank portion comprises:a first groove in said upper shank portion for receiving a first seal, said first groove being located above said electronics bay portion; a first seal disposed in said first groove, said first seal providing a fluid tight seal between said upper shank portion and said cap member; a second groove in said upper shank member for receiving a second seal, said second groove being located below said electronics bay portion; and a second seal disposed in said second groove, said second seal providing a fluid tight seal between said upper shank portion and said cap member.
- 7. An improved drill bit or use in drilling operations in a wellbore, comprising:a bit body including a plurality of bit legs, each supporting a rolling cone cutter; a coupling member formed at an upper shank portion of said bit body; at least one sensor for monitoring at least one condition of said improved drill bit during drilling operations; an electronics bay portion defined in-part by said upper shank portion of said bit body for housing at least one monitoring circuit; a battery cavity disposed in at least one of said bit legs; a conduit extending from said electronics bay portion to said battery cavity; a center-jet nozzle disposed in a central portion of said bit body.
- 8. An improved drill bit for use in drilling operations in a wellbore, comprising:a bit body including a plurality of bit legs, each supporting a rolling cone cutter; a coupling member formed at an upper shank portion of said bit body; at least one sensor for monitoring at least one condition of said improved drill bit during drilling operations; an electronics bay portion defined in-part by said upper shank portion of said bit body for housing at least one monitoring circuit; a battery cavity disposed in at least one of said bit legs; a conduit extending from said electronics bay portion to said battery cavity; an actuation system for producing a remotely detectable signal in response to signals from said at least one sensor; a monitoring circuit housed within said electronics bay portion, said monitoring circuit being adapted to monitor and control said at least one sensor and said actuation system; a battery disposed within said battery cavity for providing power to said monitoring circuit and said actuation system; and electrical leads for conductively coupling together said monitoring circuit, said at least one sensor, said actuation system, and said battery; wherein said at least one condition monitored by said at least one sensor is the dielectric constant of the drill bit lubricant.
- 9. The improved drill bit according to claim 8, wherein said remotely detectable signal is a pressure change in drilling fluid.
- 10. The improved drill bit according to claim 8, wherein said actuation system comprises:a signal nozzle in fluid communication with a first port; a cylinder in fluid communication with a second port; a means for sealing off said signal nozzle from said cylinder; a piston disposed within said cylinder; and a means for actuating said piston; wherein said means for sealing off said signal nozzle from said cylinder is adapted to be disabled by said piston upon actuation of said piston in response to a signal from said monitoring circuit, such that said drilling fluid in said central bore may flow through said first port, through said actuation system, through second port, and into said wellbore, thereby producing said remotely detectable signal.
- 11. The improved drill bit according to claim 8, wherein said at least one sensor comprises:a compensator assembly; a bearing operably associated with said rolling cone cutter; a lubrication pathway in fluid communication with said compensator assembly and said bearing through which may flow lubricant for said rolling cone cutter; a tubular shaft disposed within said lubrication pathway; at least one spacer for positioning said tubular shaft within said lubrication pathway, such that a passage is defined between the exterior said tubular shaft and the interior of said lubrication pathway; a valve operably associated with said tubular shaft for controlling the direction of flow of said lubricant relative to said tubular shaft; and an electrical contact conductively associated with said lubricant; wherein said electrical contact serves as an anode, said bit body serves as a cathode, and said lubricant serves as a dielectric material, such that the dielectric constant of said lubricant can be detected by said monitoring circuit.
- 12. An improved drill bit for use in a wellbore comprising:a bit body including a plurality of bit legs, a rolling cone cutter coupled to each bit leg, and a central bore through which flows a column of drilling fluid; a first port disposed within each bit leg, said first port being in fluid communication with said central bore; a second port disposed within each bit leg, said second port being in fluid communication with said wellbore; a monitoring system for monitoring at least one condition of said improved drill bit during drilling operations; and an actuation system electrically coupled to said monitoring system and being disposed between said first port and said second port, said actuation system comprising: a signal nozzle in fluid communication with said first port; a cylinder in fluid communication with said second port; a means for sealing off said signal nozzle from said cylinder; a piston disposed within said cylinder; and a means for actuating said piston; wherein said means for sealing off said signal nozzle from said cylinder is configured to be disabled by said piston upon actuation of said piston in response to a signal from said monitoring system, such that said drilling fluid in said central bore may flow through said first port, through said actuation system, through second port, and into said wellbore.
- 13. The improved drill bit according to claim 12, wherein said means for sealing off said signal nozzle from said cylinder comprises:a first seal covering one end of said cylinder; and a second seal covering one end of said signal nozzle; wherein both said first seal and said second seal are configured to be ruptured by said piston in response to said signal from said monitoring system.
- 14. The improved drill bit according to claim 12, wherein said means for actuating said piston comprises:an electrically resistive component carried by said cylinder; and a pyrotechnic charge coupled to said electrically resistive component, said pyrotechnic charge being operably associated with said piston; wherein said electrically resistive component is adapted to heat up so as to discharge said pyrotechnic charge in response to said signal from said monitoring system, thereby actuating said piston.
- 15. The improved drill bit according to claim 12, wherein actuation of said actuating system reduces a pressure differential between said first port and said second port, said reduction in said pressure differential being remotely detectable.
- 16. The improved drill bit according to claim 12, wherein said monitoring system comprises:a power supply carried by said drill bit; a monitoring circuit electrically coupled to said power supply; a compensator assembly; a bearing operably associated with said rolling cone cutter; a lubrication pathway in fluid communication with said compensator assembly and said bearing through which may flow lubricant for said rolling cone cutter; and an annular capacitor disposed within said lubrication pathway; wherein said lubricant serves as the dielectric of said annular capacitor, the dialectric constant of which is monitored by said monitoring circuit, whereby said signal from said monitoring system is generated when said dielectric constant obtains a selected value.
- 17. The improved drill bit according to claim 16, wherein said annular capacitor comprises:a tubular shaft disposed within said lubrication pathway; at least one spacer for positioning said tubular shaft within said lubrication pathway, such that a passage is defined between the exterior said tubular shaft and the interior of said lubrication pathway; a valve operably associated with said tubular shaft for controlling the direction of flow of said lubricant relative to said tubular shaft; and an electrical contact conductively associated with said lubricant; wherein said electrical contact serves as an anode, said bit body serves as a cathode.
- 18. An improved dill bit for use in a wellbore comprising:a bit body including a plurality of bit legs, a rolling cone cutter coupled to each bit leg, and a central bore through which flows a column of drilling fluid; a compensator assembly; a bearing operably associated with said rolling cone cutter; a lubrication pathway in fluid communication with said compensator assembly and said bearing through which may flow lubricant for said rolling cone cutter; a bit condition monitoring system operably associated with said lubrication pathway; a bit condition alert system operably associated with said central bore; and a bit condition control system for controlling said bit condition monitoring system and said bit condition alerting system.
- 19. The improved drill bit according to claim 18, wherein said bit condition monitoring system comprises:a tubular shaft disposed within said lubrication pathway; at least one spacer for positioning said tubular shaft within said lubrication pathway, such that a passage is defined between the exterior said tubular shaft and the interior of said lubrication pathway; a valve operably associated with said tubular shaft for controlling the direction of flow of said lubricant relative to said tubular shaft; and an electrical contact conductively associated with said lubricant; wherein said electrical contact serves as an anode, said bit body serves as a cathode, and said lubricant serves as a dielectric material, such that the dielectric constant of said lubricant can be measured.
- 20. The improved drill bit according to claim 19, wherein said bit condition monitoring system further comprises:at least one slot at each end of said tubular shaft; wherein said passage is in fluid communication with the interior of said tubular shaft.
- 21. The improved drill bit according to claim 19, wherein said valve comprises:a check ball; a valve seat disposed at one end of said tubular shaft for sealingly receiving said check ball; and a retaining pin for restricting the movement of said check ball relative to said valve seat; wherein said lubricant flows in one direction through the interior of said tubular shaft when said check ball is not in sealing contact with said valve seat, and in an opposing direction through said passage when said check ball is in sealing contact with said valve seat.
- 22. The improved drill bit according to claim 18, wherein said bit condition alert system comprises:a first port disposed within each bit leg, said first port being in fluid communication with said central bore; a second port disposed within each bit leg, said second port being in fluid communication with said wellbore; and an actuation system operably associated with said first port and said second port, said actuation system comprising: a signal nozzle in fluid communication with said first port; a cylinder in fluid communication with said second port; a means for sealing off said signal nozzle from said cylinder; a piston disposed within said cylinder; and a means for actuating said piston; wherein said means for sealing off said signal nozzle from said cylinder is configured to be disabled by said piston upon actuation of said piston in response to a signal from said bit condition control system, such that said drilling fluid in said central bore may flow through said first port, through said actuation system, through second port, and into said wellbore.
- 23. The improved drill bit according to claim 18, wherein said bit condition control system comprises:a control circuit carried by said drill bit, said control circuit being electrically coupled to said bit condition sensing system and to said bit condition alerting system a battery carried by said drill bit for supplying power to said bit condition sensing system, said bit condition alerting system, and said control circuit.
- 24. An improved drill bit, comprising:a bit body including a plurality of bit legs, each supporting a rolling cone cutter; a coupling member formed at an upper shank portion of said bit body; a compensator assembly; a bearing operably associated with said rolling cone cutter; a lubrication pathway in fluid communication with said compensator assembly and said bearing through which may flow lubricant for said rolling cone cutter; and a lubrication monitoring system which is in-part located in said lubrication pathway and which provides an indication of the amount of degradation of said lubricant.
- 25. An improved drill bit according to claim 24, wherein said lubrication monitoring system provides a measure of a rate of decline of a duty factor associated with said lubricant.
- 26. An improved drill bit according to claim 24, wherein said lubrication monitoring system monitors an attribute which is indicative of at least one of the following conditions:(a) an ingress of drilling fluids into said lubricant; (b) detection of the presence of wear debris from said bearing in said lubricant; and (c) effects of working shear on said lubricant.
- 27. An improved drill bit according to claim 24, wherein said lubrication monitoring system monitors for a change in a dielectric constant associated with said lubricant.
- 28. An improved drill bit according to claim 24, wherein said lubrication monitoring system monitors for changes in a dielectric constant associated with said lubricant as a result of changes in an overall capacitance associated with a variable capacitor sensor located in said lubrication pathway.
CROSS REFERENCE TO RELATED APPLICATIONS
1. The present application is a continuation-in-part of the following, commonly owned U.S. patent application Ser. No. 09/012,803, filed Jan. 23, 1998, now U.S. Pat. No. 6,230,822 entitled Method and Apparatus for Monitoring and Recording of the Operating Condition of a Downhole Drill Bit During Drilling Operations;
which is a continuation-in-part of the following commonly owned patent application U.S. patent application Ser. No. 08/760,122, filed Dec. 3, 1996, entitled Method and Apparatus for Monitoring and Recording of Operating Conditions of a Downhole Drill Bit During Drilling Operations, with the following inventors: Theodore E. Zaleski, Jr., and Scott R. Schmidt, which issued as U.S. Pat. No. 5,813,480 on Sep. 29, 1998;
which is a continuation under 37 CFR 1.62 of U.S. patent application Ser. No. 08/643,909, filed May 7, 1996, now abandoned entitled Method and Apparatus for Monitoring and Recording of Operating Conditions of a Downhole Drill Bit During Drilling Operations, with the following inventors: Theodore E. Zaleski, Jr., and Scott R. Schmidt;
which is a continuation of U.S. patent application Ser. No. 08/390,322, filed Feb. 16, 1995, now abandoned entitled Method and Apparatus for Monitoring and Recording of Operating Conditions of a Downhole Drill Bit During Drilling Operations, with the following inventors: Theodore E. Zaleski, Jr., and Scott R. Schmidt.
All of these prior applications are incorporated herein by reference as if fully set forth.
2. This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/161,620, filed Oct. 27, 1999, entitled Method and Apparatus for Monitoring and Recording of the Operating Condition of a Downhole Drill Bit During Drilling Operations. This provisional patent application is incorporated herein by reference as if fully set forth.
US Referenced Citations (16)
Provisional Applications (1)
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60/161620 |
Oct 1999 |
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Continuations (2)
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08/643909 |
May 1996 |
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08/760122 |
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08/390322 |
Feb 1995 |
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08/643909 |
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Continuation in Parts (2)
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09/012803 |
Jan 1998 |
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09/702921 |
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08/760122 |
Dec 1996 |
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09/012803 |
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