Claims
- 1. A thrust block for use in containing contaminants during subterranean drilling operations, comprising:
a platform configured for disposition of drilling equipment thereon; at least one access port disposed in the platform, the at least one access port comprising a bore passing through the platform; a diaphragm seal comprising a membrane disposed across the bore; and a flexible sack seal disposed in the bore above the diaphragm seal.
- 2. The thrust block of claim 1, further comprising a wiper assembly disposed underneath the diaphragm seal.
- 3. The thrust block of claim 2, wherein the wiper assembly comprises a sealing material or at least one wiper blade assembly disposed across the bore of the at least one access port.
- 4. The thrust block of claim 1, further comprising a cover removably disposed across the bore and having a top surface substantially flush with a top surface of the platform.
- 5. The thrust block of claim 1, further comprising at least one support disposed underneath the platform for elevating the platform to form an overflow space between the platform and a ground surface of the drilling site.
- 6. The thrust block of claim 1, wherein the flexible sack seal comprises a double-walled, substantially tubular sack.
- 7. The thrust block of claim 1, wherein the at least one access port comprises a replaceable unit.
- 8. The thrust block of claim 1, further comprising an examination cylinder disposed in the platform and extending below a lower surface thereof for enabling examination of an area under the platform therethrough.
- 9. The thrust block of claim 8, wherein the examination cylinder comprises a transparent structure.
- 10. A drill shroud for use in containing contaminants during subterranean drilling operations, comprising:
an upper bracket configured for attachment to a drilling rig; a lower bracket configured for attachment to a drilling rig; a flexible enclosure disposed between and sealingly secured to the upper and lower brackets and defining a volume therewithin; and a substantially tubular connection conduit configured for forming a connection with a flexible sack seal secured to and extending downwardly from the lower bracket.
- 11. The drill shroud of claim 10, further comprising a drill shaft for connection to a drive unit, the drill shaft passing through the upper bracket and retractable within the volume responsive to elongation of the flexible enclosure.
- 12. The drill shroud of clam 11, further comprising at least one seal secured to the upper bracket about the drill shaft and configured to allow rotation and longitudinal movement of the drill shaft while sealing thereagainst.
- 13. The drill shroud of claim 10, wherein the flexible enclosure comprises a dual-walled flexible enclosure.
- 14. The drill shroud of claim 10, further comprising at least one o-ring disposed on the connection conduit for forming a sealed connection with a flexible sack seal disposed thereabout.
- 15. The drill shroud of claim 10, further comprising at least one mechanical fastening structure for connecting a flexible sack seal to the connection conduit and forming a sealed connection therewith.
- 16. The drill shroud of claim 10, wherein the connection conduit is detachably secured to the lower bracket.
- 17. The drill shroud of claim 10, further comprising a sensor carried by the drill shroud and configured and positioned to detect at least one contaminant present within the volume.
- 18. The drill shroud of claim 17, wherein the sensor comprises at least one of a radiation sensor and a VOC sensor.
- 19. The drill shroud of claim 10, further comprising a decontamination nozzle extending from an exterior thereof and in communication with the volume.
- 20. The drill shroud of claim 10, further comprising at least one air filter communicating with the volume and an exterior of the shroud and configured for passage of air therethrough while substantially preventing passage of contaminants therethrough.
- 21. A system for containment during subterranean drilling, the system comprising:
a thrust block, the thrust block comprising:
a platform configured for disposition of drilling equipment thereon; at least one access port disposed in the platform, the at least one access port comprising a bore passing through the platform; a diaphragm seal comprising a membrane disposed across the bore; and a flexible sack seal disposed in the bore above the diaphragm seal; a drill shroud comprising:
an upper bracket configured for attachment to a drilling rig, a lower bracket configured for attachment to a drilling rig, a flexible enclosure secured to and extending between the upper and lower brackets and defining a volume therewithin; a connection conduit configured for forming a sealed connection with a flexible sack seal secured to and extending downwardly from the lower bracket; and a drill shaft for connection to a drive unit of a drilling rig, the drill shaft passing through the upper bracket and retractable within the volume by elongating the flexible enclosure.
- 22. The system of claim 21, further comprising a wiper assembly disposed underneath the diaphragm seal.
- 23. The system of claim 22, wherein the wiper assembly comprises a sealing material or at least one wiper blade assembly disposed across the bore of the at least one access port.
- 24. The system of claim 21, further comprising a cover removably disposed across the bore and having a top surface substantially flush with a top surface of the platform.
- 25. The system of claim 21, wherein the flexible sack seal comprises a double-walled sack.
- 26. The system of claim 21, wherein the at least one access port comprises a replaceable unit.
- 27. The system of claim 21, wherein the thrust block further comprises at least one support disposed underneath the platform for elevating the platform to form an overflow space between the platform and a ground surface of the drilling site.
- 28. The system of claim 27, further comprising an examination cylinder disposed in the platform and extending below a lower surface thereof for enabling examination of an area under the platform therethrough.
- 29. The system of claim 28, wherein the examination cylinder comprises a transparent structure.
- 30. The system of claim 27, further comprising at least one sensor located and configured for monitoring a characteristic within the overflow space.
- 31. The system of claim 30, wherein the at least one sensor is selected from the group consisting of presence sensors, concentration sensors, distributions sensors and radiation monitors.
- 32. The system of claim 30, wherein the at least one sensor is in communication with a computer system.
- 33. The system of claim 27, further comprising a sealing structure including a berm adjacent at least a portion of the platform for providing containment of contaminants within the overflow space.
- 34. The system of clam 21, further comprising at least one seal secured to the upper bracket adjacent the drill shaft and in contact therewith for allowing rotation and longitudinal movement of the drill shaft while sealing the volume.
- 35. The system of claim 21, wherein the flexible enclosure comprises a dual-walled flexible enclosure.
- 36. The system of claim 21, further comprising at least one o-ring disposed on the connection conduit for forming a sealed connection with a flexible sack seal.
- 37. The system of claim 21, further comprising at least one mechanical fastening structure for connecting the flexible sack seal to the connection conduit.
- 38. The system of claim 21, wherein the connection conduit is detachably secured to the lower bracket.
- 39. The system of claim 21, further comprising a sensor carried by the drill shroud and configured and positioned to detect at least one contaminant present within the volume.
- 40. The system of claim 39, wherein the sensor comprises at least one of a radiation sensor and a VOC sensor.
- 41. The system of claim 21, further comprising a decontamination nozzle allowing access to the volume.
- 42. The system of claim 21, further comprising at least one air filter communicating with the volume and an exterior of the shroud and configured for passage of air therethrough while substantially preventing passage of contaminants therethrough.
- 43. A method for subterranean drilling, the method comprising:
providing a thrust block including at least one access port comprising a bore passing through the thrust block, a diaphragm seal comprising a membrane disposed across the bore, and a flexible sack seal disposed in the bore above the diaphragm seal, over the drilling site; providing a drill rig attached to a drill shroud comprising an upper bracket, a lower bracket, a flexible enclosure secured to and extending between the upper and lower brackets and defining a volume therein, a connection conduit secured to and extending downwardly from the lower bracket, and a drill shaft passing through the upper bracket and retractable within the volume by elongation of the flexible enclosure; attaching the flexible sack seal to the connection conduit; and advancing the drill shaft downwards to pierce the diaphragm seal and drill into the drill site.
- 44. The method according to claim 43, further comprising:
retracting the drill shaft into the volume; sealing the flexible bag seal below the connection conduit to form a sealed bag; and separating the flexible bag seal above the sealed bag.
- 45. The method according to claim 44, wherein sealing the flexible bag seal below the connection conduit to form a sealed bag comprises forming two closures with a longitudinal separation space therebetween.
- 46. The method according to claim 45, further comprising examining the drill shroud for contamination following drilling.
- 47. The method according to claim 46, further comprising decontaminating the drill shroud of contaminants.
- 48. The method according to claim 47, wherein decontaminating the drill shroud comprises providing a decontamination substance to the volume via a decontamination nozzle extending from an exterior thereof and in communication with the volume.
- 49. The method according to claim 48, wherein providing a decontamination substance to the volume comprises providing CO2 pellets.
- 50. The method according to claim 43, wherein providing a thrust block including at least one access port comprises providing a thrust block including a wiper assembly disposed underneath the diaphragm seal.
- 51. The method according to claim 43, wherein providing a thrust block comprises providing a thrust block including an examination cylinder disposed in the platform for allowing examination under the platform therethrough.
- 52. The method according to claim 43, wherein providing a thrust block comprises providing a platform having at least one support disposed thereunder to form an overflow space between the platform and a ground surface of the drilling site.
- 53. The method according to claim 52, further comprising disposing at least one sensor in communication with the overflow space for monitoring an aspect thereof.
- 54. The method according to claim 52, wherein disposing at least one sensor in communication with the overflow space for monitoring an aspect thereof comprises disposing a sensor selected from the group consisting of presence sensors, concentration sensors, distributions sensors and radiation monitors.
- 55. The method according to claim 54, further comprising monitoring the overflow space using a computer system in communication with the at least one sensor.
- 56. The method according to claim 52, further comprising peripherally sealing the overflow space to provide containment from the surrounding environment.
- 57. The method according to claim 56, wherein peripherally sealing the overflow space comprises constructing a berm around the thrust block.
- 58. A process for immobilizing buried contaminants, the process comprising:
providing a thrust block including at least one access port comprising a bore passing through the thrust block, a diaphragm seal comprising a membrane disposed across the bore, and a flexible sack seal disposed in the bore above the diaphragm seal, over a drilling site; providing a drill rig attached to a drill shroud comprising an upper bracket, a lower bracket, a flexible enclosure secured to and extending between the upper and lower brackets and defining a volume therewithin, a connection conduit secured to and extending downwardly from the lower bracket, and a drill shaft passing through the upper bracket and retractable within the volume by elongation of the flexible enclosure; attaching the flexible sack seal to the connection conduit; advancing the drill shaft downwards to pierce the diaphragm seal and drill into the drill site; injecting sealant into the drill site to form a sealant column; retracting the drill shaft into the volume; sealing the flexible bag seal below the connection conduit to form a sealed bag; and separating the flexible bag seal above the sealed bag.
- 59. The process according to claim 58, where injecting sealant into the drill site comprises injecting sealant as the drill shaft is retracted.
- 60. The process according to claim 58, wherein injecting the sealant to form a sealant column comprises injecting sealant through an aperture within a drill bit at a distal end of the drill shaft to form a sealant column overlapping at least one adjacent sealing column to form a subterranean monolith of sealant.
- 61. The process according to claim 58, wherein sealing the flexible bag seal below the connection conduit to form a sealed bag comprises forming two closures with a longitudinal separation space there between.
- 62. The process according to claim 58, further comprising examining the drill shroud for contamination following drilling.
- 63. The process according to claim 62, further comprising decontaminating the drill shroud of contaminants.
- 64. The process according to claim 63, wherein decontaminating the drill shroud comprises providing a decontamination substance to the volume via a decontamination nozzle extending from an exterior thereof and in communication with the volume.
- 65. The process according to claim 64, wherein providing a decontamination substance to the volume comprises providing CO2 pellets.
- 66. The process according to claim 58, wherein providing a thrust block including at least one access port comprises providing a thrust block including a wiper assembly disposed underneath the diaphragm seal.
- 67. The process according to claim 58, wherein providing a thrust block comprises providing a platform over the drilling site with at least one support disposed underneath the platform to form an overflow space between the platform and a ground surface of the drilling site.
- 68. The process according to claim 67, wherein providing a thrust block comprises providing a thrust block including an examination cylinder disposed in the platform for allowing examination under the platform therethrough.
- 69. The process according to claim 67, further comprising disposing at least one sensor in communication with the overflow space for monitoring an aspect thereof.
- 70. The process according to claim 69, wherein disposing at least one sensor in communication with the overflow space for monitoring an aspect thereof comprises disposing a sensor selected from the group consisting of presence sensors, concentration sensors, distributions sensors and radiation monitors.
- 71. The process according to claim 70, further comprising monitoring the overflow space using a computer system in communication with the at least one sensor.
- 72. The process according to claim 67, further comprising peripherally sealing the overflow space to provide containment from the surrounding environment.
- 73. The process according to claim 72, wherein peripherally sealing the overflow space comprises constructing a berm around the thrust block.
- 74. The process according to claim 72, further comprising providing relatively negative air pressure relative to the surrounding environment in the overflow space.
- 75. The process according to claim 74, wherein providing relatively negative air pressure compared to the surrounding environment in the overflow space comprises removing air from the overflow space using a ventilation system.
- 76. The process according to claim 74, further comprising providing relatively negative air pressure relative to the surrounding environment in the drill shroud.
- 77. The process according to claim 76, wherein providing relatively negative air pressure compared to the surrounding environment in the drill shroud comprises removing air from the drill shroud using a ventilation system ventilating said overflow space, once said diaphragm seal is pierced.
- 78. The process according to claim 58, wherein injecting sealant into the drill site to form a sealant column comprises injecting at least one sealant selected from the group comprising analogs of natural cements, synthetic polymeric sealants and mixtures thereof.
GOVERNMENT RIGHTS
[0001] The United States Government has rights in the following invention pursuant to Contract No. DE-AC07-99ID13727 between the U.S. Department of Energy and Bechtel BWXT Idaho, LLC.