Claims
- 1. An improved downhole drill bit for use in drilling operations in wellbores, comprising:
- an integrally formed bit body;
- at least one cutting structure carried on said integrally formed bit body;
- a coupling member located at an upper portion of said intergrally formed bit body for securing said bit body to a drillstring;
- at least one operating condition sensor located in and carried by said integrally formed bit body for monitoring at least one bit operating condition during drilling operations;
- at least one semiconductor memory device, located in and carried by said integrally formed bit body, for recording in memory data pertaining to a likely failure condition for a time interval which is substantially co-extensive with said drilling operations; and
- an electrical power supply located in and carried by said integrally formed bit body for supplying electrical power to electrical power consuming components carried by said integrally formed bit body.
- 2. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one bit operating condition which has been recorded by said at least one semiconductor memory device while drilling operations occur.
- 3. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one bit operating condition which has been recorded by said at least one semiconductor memory device, while drilling operations occur.
- 4. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one bit operating condition which has been recorded by said at least one semiconductor memory device, after said improved downhole drill bit is pulled from a wellbore.
- 5. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- a communication system for communicating information away from said improved downhole drill bit during drilling operations.
- 6. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- a communication system for communicating information from said improved downhole drill bit to at least one particular wellbore location.
- 7. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- a communication system for communicating information from said improved downhole drill bit to a surface location.
- 8. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- a communication system for communicating a warning signal from said improved downhole drill bit to at least one particular wellbore location.
- 9. An improved downhole drill bit for use in drilling operations in wellbores, according to claim 1, further comprising:
- a processor member, located in and carried by said drill bit, for performing at least one predefined analysis of said data pertaining to said at least one bit operating condition which has been recorded by said at least one semiconductor memory device.
- 10. An improved downhole drill bit, in accordance with claim 9:
- wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said improved downhole drill bit;
- (b) analysis of temperature at particular locations on said improved downhole drill bit;
- (c) analysis of at least one operating condition in at least one lubrication system of said improved downhole drill bit; and
- (d) analysis of accelerations of said improved downhole drill bit.
- 11. An improved drill bit for use in drilling operations in wellbores, comprising:
- a bit body;
- a threaded coupling member formed at an upper portion of said bit body for connecting said bit body to a drill string;
- at least one cutting structure carried by said bit body:
- at least one bit failure sensor located in, and carried by, said drill bit body for monitoring at least one bit operating condition during drilling operations, which has been empirically determined to be predictive of likely bit failure;
- at least one electronic memory device, located in and carried by said bit, for recording data pertaining to said at least one bit operating condition for a time interval which is substantially co-extensive with said drilling operation;
- a data processor device, located in and carried by said bit body, for performing at least one predefined diagnostic analysis of said at least one bit operating condition in order to determine if bit failure is impending prior to the occurrence of bit failures; and
- an electrical power supply for supplying electrical power to at least said data processor device, located in and carried by said bit body.
- 12. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one electronic memory device.
- 13. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one bit operating condition which has been recorded by said at least one electronic memory device, while drilling operations occur.
- 14. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one bit operating condition which has been recorded by said at least one electronic memory device, after said improved drill bit is pulled from a wellbore.
- 15. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- a communication system for communicating information away from said improved drill bit during drilling operations.
- 16. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- a communication system for communicating information from said improved drill bit to at least one particular wellbore location.
- 17. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- a communication system for communicating information from said improved drill bit to a surface location.
- 18. An improved drill bit for use in drilling operations in wellbores, according to claim 11, further comprising:
- a communication system for communicating a warning signal from said improved drill bit to at least one particular wellbore location.
- 19. An improved drill bit, in accordance with claim 11:
- wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said improved drill bit;
- (b) analysis of temperature at particular locations on said improved drill bit;
- (c) analysis of at least one operating condition in at least one lubrication system of said improved drill bit; and
- (d) analysis of accelerations of said improved drill bit.
- 20. An improved drill bit for use in drilling operations in wellbores, according to claim 11:
- wherein said at least one electronic memory device comprises at least one semiconductor memory device.
- 21. A method of monitoring for impending failure of a downhole drilling apparatus, during drilling operations in a wellbore, comprising the method steps of:
- providing a drill bit assembly including at least one bit body;
- providing at least one cutting structure on said bit body;
- locating at least one operating condition sensor in said bit body;
- locating at least one electronic memory unit in said bit body;
- securing said drill bit assembly to a drillstring and lowering said drillstring into a wellbore;
- disintegrating geologic formations with said drill bit assembly;
- utilizing said at least one operating condition sensor to monitor at least one bit operating condition, which has been empirically determined to be predictive of likely bit failure, during said step of disintegrating geologic formations with said assembly; and
- recording in said at least one electronic memory data pertaining to said at least one bit operating condition during said step of disintegrating geologic formations with said assembly for a time interval which is substantially co-extensive with said drilling operation.
- 22. A method of monitoring for impending failure of a downhole drilling apparatus, during drilling operations in a wellbore, according to claim 21, further comprising;
- communicating information to at least one particular wellbore location during said step of disintegrating geologic formations with said assembly.
- 23. A method of monitoring for impending failure of a downhole drilling apparatus, during drilling operations in a wellbore, according to claim 21, further comprising;
- communicating information to a surface location during said step of disintegrating geologic formations with said assembly.
- 24. A method of monitoring for impending failure of a downhole drilling apparatus, during drilling operations in a wellbore, according to claim 21, further comprising:
- locating a processing member in said bit body; and
- utilizing said processing member to perform at least one predetermined analysis of data pertaining to said at least one bit operating condition during said step of disintegrating geologic formations with said assembly.
- 25. A method of monitoring for impending failure of a downhole drilling apparatus, during drilling operations in a wellbore, according to claim 21, further comprising:
- retrieving said assembly from said wellbore:
- reviewing said data pertaining to said at least one operating condition.
- 26. A method of monitoring for impending failure of a downhole drilling apparatus, during drilling operations in a wellbore, according to claim 21, further comprising:
- determining whether or not said drill bit has been utilized in an appropriate manner from said data pertaining to said at least one bit operating condition.
- 27. A method of monitoring for impending failure of a drill bit, during drilling operations in a wellbore, comprising the method steps of:
- providing a drill bit including a bit body;
- locating at least one bit failure condition sensor in said bit body;
- locating at least one electronic memory unit in said bit body, which has been empirically determined to be predictive of impending bit failure before failure occurs;
- securing said drill bit to a drillstring and lowering said drillstring into a wellbore;
- disintegrating geologic formations with said drill bit;
- utilizing said at least one bit failure condition sensor to monitor at least one bit operating condition during said step of disintegrating geologic formations with said drill bit;
- recording in said at least one electronic memory data pertaining to said at least one bit operating condition during said step of disintegrating geologic formations with said drill bit for a time interval which is substantially co-extensive with said drilling operation;
- locating a data processor device in said bit body; and
- performing during drilling operations at least one predefined diagnostic analysis in order to determine if bit failure is impending prior to the occurrence of bit failure.
- 28. A method of monitoring for impending failure of a drill bit, during drilling operations in a wellbore, according to claim 27, further comprising;
- communicating information to at least one particular wellbore location during said step of disintegrating geologic formations with said drill bit.
- 29. A method of monitoring for impending failure of a drill bit, during drilling operations in a wellbore, according to claim 27, further comprising;
- communicating information to a surface location during said step of disintegrating geologic formations with said drill bit.
- 30. A method of monitoring for impending failure of a drill bit, during drilling operations in a wellbore, according to claim 27, further comprising:
- retrieving said drill bit from said wellbore:
- reviewing said data pertaining to said at least one bit operating condition.
- 31. A method of monitoring for impending failure of a drill bit, during drilling operations in a wellbore, according to claim 30, further comprising:
- determining whether or not said drill bit has been utilized in an appropriate manner from said data pertaining to said at least one bit operating condition.
- 32. A method of monitoring at least one operating condition of a drill bit during drilling operations, comprising:
- placing a plurality of operating condition sensors on at least one test drill bit;
- subjecting said at least one test drill bit to at least one drilling operation;
- recording data with plurality of operating condition sensors;
- identifying impending drill bit failure indicators in said data;
- including selected ones of said plurality of operating condition sensors in a production drill bit;
- including in said production drill bit a monitoring system for comparing data obtained during drilling operations with particular ones of said impending drill bit failure indicators;
- conducting drilling operations with said production drill bit;
- utilizing said monitoring system during drilling operations to identify impending drill bit failure; and
- telemetering data uphole during drilling operations to provide an indication of impending drill bit failure.
- 33. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32:
- wherein said monitoring system is carried within said production drill bit.
- 34. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32, further comprising:
- utilizing said monitoring system to record data from said selected ones of said plurality of operating condition sensors during drilling operations.
- 35. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 34, further comprising:
- retrieving said monitoring system with said production drill bit; and
- examining data recorded in said monitoring system.
- 36. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32, wherein said plurality of operating condition sensors comprise at least one of the following operating condition sensor:
- (a) strain sensors located in at least one bit leg of said at least one test drill bit for sensing at least one of (1) axial strain, (2) shear strain, and (3) bending strain;
- (b) temperature sensors located in at least one bearing of said at least one test drill bit for measuring at least one of (1) temperature at a cone mouth of said bearing, (2) temperature at a thrust face of said bearing, and (3) temperature at a shirt tail of said bearing;
- (c) lubrication system sensors located in at least one lubrication system of said test drill bit for measuring at least one of (1) reservoir pressure, and (2) seal pressure;
- (d) at least one accelerometer for measuring acceleration of a bit body of said at east one test drill bit; and
- (e) a wellbore sensor for monitoring at least one of (1) ambient pressure in said wellbore, and (2) ambient temperature in said wellbore.
- 37. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32, wherein said monitoring system includes:
- a programmable controller which includes program instructions and which initiates a warning signal if at least one predefined impending failure criteria is met during monitoring operations.
- 38. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32, wherein said stop of telemetering data includes:
- communicating data from said production drill bit to a reception apparatus located in a tubular subassembly proximate and production drill bit.
- 39. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32, wherein said step of telemetering data includes:
- communicating data from said production drill bit to a reception apparatus located in a tubular subassembly proximate said production drill bit; and
- providing a measurement-while-drilling mud pulse telemetry communication system;
- utilizing said measurement-while-drilling mud pulse telemetry system to communicate an indication of impending drill bit failure to surface equipment.
- 40. A method of monitoring at least one operating condition of a drill bit during drilling operations, according to claim 32, further comprising:
- subjecting said at least one test drill bit to at least one field test drilling operation; and
- recording data with said plurality of operating condition sensors during both of said at least one simulated drilling operation, and said at least one field test drilling operation; and
- identifying impending drill bit failure indicators in data accumulated during said at least one simulated drilling operation and said at least one field test drilling operation.
- 41. An improved drilling apparatus for use in drilling operations in wellbores, comprising:
- a bit assembly including a bit body;
- a threaded coupling member formed at an upper portion of said bit body;
- at least one operating condition sensor carried by said drill bit for monitoring at least one of: (1) temperature, (2) pressure, (3) strain, and (4) acceleration; and providing at least one output signal indicative thereof;
- a comparator carried in said bit assembly for (1) receiving said at least one output signal (2) comparing said at least one output signal to at least one predefined impending failure threshold and (3) communicating an impending failure signal.
- 42. An improved drill bit according to claim 41, wherein said at least one operating condition sensor comprises at least one of the following operating condition sensor:
- (a) strain sensors located in at least one bit leg of said drill bit for sensing at least one of (1) axial strain, (2) shear strain, and (3) bending strain;
- (b) temperature sensors located in at least one bearing of said drill bit for measuring at least one of (1) temperature at a cone mouth of said bearing, (2) temperature at a thrust face of said bearing, and (3) temperature at a shirt tail of said bearing;
- (c) lubrication system sensors located in at least one lubrication system of said drill bit for measuring at least one of (1) reservoir pressure, and (2) seal pressure;
- (d) at least one accelerometer for measuring acceleration of a bit body of said drill bit; and
- (e) a wellbore sensor for monitoring at least one of (1) ambient pressure in said wellbore, and (2) ambient temperature in said wellbore.
- 43. An improved drill bit according to claim 41, wherein said comparator communicates an impending failure signal to a reception apparatus located in a tubular subassembly proximate said drill bit.
- 44. An improved drill bit for use in drilling operations in a wellbore, comprising:
- an integrally-formed bit body;
- a coupling member formed at an upper portion of said integrally-formed bit body to allow connection to a drillstring;
- at least one operating condition sensor carried within said integrally-formed bit body for monitoring at least one operating condition during drilling operations;
- at least one memory member, located in and carried by said integrally-formed bit body, for recording in memory data pertaining to said at least one operating condition for a time interval which is substantially co-extensive with said drilling operations, without any required interaction with any other component of said drillstring; and;
- an electrical power supply carried by said integrally formed bit body for supplying electrical power to at least said at least one memory member during drilling operations.
- 45. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member.
- 46. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member, while drilling operations occur.
- 47. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member, after said improved drill bit is pulled from a wellbore.
- 48. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- a communication system for communicating information away from said improved drill bit during drilling operations.
- 49. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- a communication system for communicating information from said improved drill bit to at least one particular wellbore location.
- 50. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- a communication system for communicating information from said improved drill bit to a surface location.
- 51. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- a communication system for communicating a warning signal from said improved drill bit to at least one particular wellbore location.
- 52. An improved drill bit for use in drilling operations in a wellbore, according to claim 44, further comprising:
- a processor member, located in and carried by integrally-formed bit body, for performing at least one predefined analysis of said data pertaining to said at least one operating condition which has been recorded by said at least one memory member.
- 53. An improved drill bit, in accordance with claim 52:
- wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said improved drill bit;
- (b) analysis of temperature at particular locations on said improved drill bit;
- (c) analysis of at least one operating condition in at least one lubrication system of said improved drill bit; and
- (d) analysis of accelerations of said improved drill bit.
- 54. An improved drill bit for use in drilling operations in a wellbore, according to claim 44:
- wherein said at least one memory member comprises at least one semiconductor memory device.
- 55. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, comprising:
- providing a drill bit including an integrally-formed bit body;
- locating at least one operating condition sensor in said integrally-formed bit body;
- locating at least one electronic memory unit in said integrally-formed bit body;
- securing said drill bit to a drillstring and lowering said drillstring into a wellbore;
- disintegrating geologic formations with said drill bit;
- providing an electrical power supply for supplying electrical power to at least said at least one electronic memory unit during drilling operations; utilizing said at least one operating condition sensor to monitor at least one operating condition during said step of disintegrating geologic formations with said drill bit; and
- recording in said at least one electronic memory data pertaining to said at least one operating condition during said step of disintegrating geologic formations with said drill bit for a time interval which is substantially co-extensive with said drilling operation, without any required interaction with any other component of said drillstring.
- 56. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 55, further comprising;
- communicating information to at least one particular wellbore location during said step of disintegrating geologic formations with said drill bit.
- 57. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 55, further comprising;
- communicating information to a surface location during said step of disintegrating geologic formations with said drill bit.
- 58. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 55, further comprising:
- locating a processing member in said drill bit; and
- utilizing said processing member to perform at least one predetermined analysis of data pertaining to said at least one operating condition during said step of disintegrating geologic formations with said drill bit.
- 59. A method according to claim 58 wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said drill bit;
- (b) analysis of temperature at particular locations on said drill bit;
- (c) analysis of at least one operating condition in at least one lubrication system of said drill bit:
- (d) analysis of accelerations of said drill bit.
- 60. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 55, further comprising:
- retrieving said drill bit from said wellbore:
- reviewing said data pertaining to said at least one operating condition.
- 61. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 60, further comprising:
- determining whether or not said drill bit has been utilized in an appropriate manner from said data pertaining to said at least one operating condition.
- 62. An improved drill bit for use in drilling operations in a wellbore, comprising:
- a bit body including a plurality of bit heads, each supporting a rolling cone cutter;
- a coupling member formed at an upper portion of said bit body;
- at least one operating condition sensor carried by said bit body for monitoring at least one operating condition during drilling operations;
- at least one memory member, located in and carried by said bit body, for recording in memory data pertaining to said at least one operating condition for a time interval which is substantially co-extensive with said drilling operation, without any required interaction with any other component of said drilling; and
- an electrical power supply carried by said integrally formed bit body for supplying power to at least said at least one memory member during drilling operations.
- 63. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member.
- 64. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member, while drilling operations occur.
- 65. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member, after said improved drill bit is pulled from a wellbore.
- 66. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- a communication system for communicating information away from said improved drill bit during drilling operations.
- 67. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- a communication system for communicating information from said improved drill bit to at least one particular wellbore location.
- 68. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- a communication system for communicating information from said improved drill bit to a surface location.
- 69. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- a communication system for communicating a warning signal from said improved drill bit to at least one particular wellbore location.
- 70. An improved drill bit for use in drilling operations in a wellbore, according to claim 62, further comprising:
- a processor member, located in and carried by said bit body, for performing at least one predefined analysis of said data pertaining to said at least one operating condition which has been recorded by said at least one memory member.
- 71. An improved drill bit, in accordance with claim 70:
- wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said improved drill bit;
- (b) analysis of temperature at particular locations on said improved drill bit;
- (c) analysis of at least one operating condition in at least one lubrication system of said improved drill bit; and
- (d) analysis of accelerations of said improved drill bit.
- 72. An improved drill bit for use in drilling operations in a wellbore, according to claim 62:
- wherein said at least one memory member comprises at least one semiconductor memory device.
- 73. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, comprising:
- providing a drill bit including a bit body which includes a plurality of bit heads, each supporting a rolling cone cutter;
- locating at least one operating condition sensor in said bit body;
- locating at least one electronic memory unit in said bit body;
- locating an electrical power supply in said bit body for supplying electrical power to at least sat at least one memory member during drilling operations;
- securing said drill bit to a drillstring and lowering said drillstring into a wellbore;
- disintegrating geologic formations with said assembly;
- utilizing said at least one operating condition sensor to monitor at least one operating condition during said step of disintegrating geologic formations with said drill bit; and
- recording in said at least one electronic memory data pertaining to said at least one operating condition during said step of desintegrating geologic formations with said drill bit for a time interval which is substantially co-extensive with said drilling operation, without any required interaction with any other component of said drillstring.
- 74. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 73, further comprising:
- communicating information to at least one particular wellbore location during said step of disintegrating geologic formations with said drill bit.
- 75. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 73, further comprising:
- communicating information to a surface location during said step of disintegrating geologic formations with said drill bit.
- 76. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 73, further comprising:
- locating a processing member in said bit body; and
- utilizing said processing member to perform at least one predetermined analysis of data pertaining to said at least one operating condition during said step of disintegrating geologic formations with said drill bit.
- 77. A method according to claim 76, wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said drill bit;
- (b) analysis of temperature at particular locations on said drill bit;
- (c) analysis of at least one operating condition in at least one lubrication system of said drill bit;
- (d) analysis of accelerations of said drill bit.
- 78. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 73, further comprising:
- retrieving said drill bit from said wellbore:
- reviewing said data pertaining to said at least one operating condition.
- 79. A method of monitoring at least one operating condition of a drill bit, during drilling operations in a wellbore, according to claim 78, further comprising:
- determining whether or not said drill bit has been utilized in an appropriate manner from said data pertaining to said at least one operating condition.
- 80. An improved drilling apparatus for use in drilling operations in wellbores, comprising:
- a bit body;
- a cutting structure carried by said bit body;
- a communication system located in said wellbore and communicatively coupled to said improved drilling apparatus;
- at least one operating condition sensor located in and carried by said drilling apparatus in said bit body for monitoring at least one of: (1) temperature, (2) pressure, (3) strain, and (4) acceleration, and providing at least one output signal indicative thereof;
- a comparator for (1) receiving said at least one output signal (2) comparing said at least one output signal to at least one predefined diagnostic threshold and reaching a diagnostic conclusion (3) communicating a signal representative of said diagnostic conclusion concerning an operating condition of said drilling apparatus utilizing said communication system.
- 81. An improved drilling apparatus according to claim 80, wherein said at least one operating condition sensor comprises at least one of the following operating condition sensor:
- (a) strain sensors located for sensing at least one of (1) axial strain, (2) shear strain, and (3) bending strain;
- (b) temperature sensors located in at least one bearing of said drill bit;
- (c) lubrication system sensors located in at least one lubrication system of said drill bit;
- (d) at least one accelerometer for measuring acceleration of said bit body of said drill bit.
- 82. An improved drilling apparatus for use in drilling operations in wellbores, comprising:
- a bit body;
- a cutting structure carried by said bit body;
- a communication system located in said wellbore and communicatively coupled to said improved drilling apparatus;
- at least one operating condition sensor located in and carried by said drilling apparatus in said bit body for monitoring at least one of: (1) temperature, (2) pressure, (3) strain, and (4) acceleration, and providing at least one output signal indicative, thereof;
- a data processing system including a controller and data processing instructions for (1) receiving said at least one output signal (2) executing program instructions for comparing said at least one output signal to at least one predefined diagnostic threshold and reaching a diagnostic conclusion (3) executing program instructions for communicating a signal representative of said diagnostic conclusion concerning an operating condition of said drilling apparatus utilizing said communication system.
- 83. An improved drilling apparatus according to claim 82, wherein said at least one operating condition sensor comprises at least one of the following operating condition sensor:
- (a) strain sensors located for sensing at least one of (1) axial strain, (2) shear strain, and (3) bending strain;
- (b) temperature sensors located in at least one bearing of said drill bit;
- (c) lubrication system sensors located in at least one lubrication system of said drill bit;
- (d) at least one accelerometer for measuring acceleration of said bit body of said drill bit.
- 84. An improved drilling apparatus for use in drilling operations in a wellbore, comprising:
- an integrally-formed bit body;
- a coupling member formed at an upper portion of said integrally-formed bit body to allow connection to a drillstring;
- a communication system located in said wellbore and communicatively coupled to said improved drilling apparatus;
- at least one operating condition sensor carried within said integrally-formed bit body for monitoring at least one operating condition during drilling operations;
- at least one electronic memory member, located in and carried by said integrally-formed bit body, for recording in memory data pertaining to said at least one operating condition for a time interval which is substantially co-extensive with said drilling operations, without any required interaction with any other component of said drillstring;
- a data processing system including a controller and data processing instructions for:
- (a) receiving data from said at least one operating condition sensor during drilling operations;
- (b) comparing said data to at least one predefined diagnostic threshold;
- (c) reaching a diagnostic conclusion concerning an operating condition of said drilling apparatus;
- (d) interacting with said communication system to communicate a signal representative of said diagnostic conclusion;
- an electrical power supply carried by said integrally formed bit body for supplying electrical power to at least said data processing system and said at least one memory member during drilling operations.
- 85. An improved drill bit for use in drilling operations in a wellbore, according to claim 84, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member.
- 86. An improved drill bit for use in drilling operations in a wellbore, according to claim 84, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member, while drilling operations occur.
- 87. An improved drill bit for use in drilling operations in a wellbore, according to claim 84, further comprising:
- at least one data reader member for recovering said data pertaining to said at least one operating condition which has been recorded by said at least one memory member, after said improved drill bit is pulled from a wellbore.
- 88. An improved drill bit, in accordance with claim 84:
- wherein said at least one predetermined analysis includes at least one of:
- (a) analysis of strain at particular locations on said improved bit body;
- (b) analysis of temperature at particular locations on said bit body;
- (c) analysis of at least one operating condition in at least one lubrication system of said improved drilling apparatus; and
- (d) analysis of accelerations of said bit body.
Parent Case Info
This is a continuation of application Ser. No. 08/643,909, filed May 7, 1996, which is a continuation of application Ser. No. 08/390,322, filed Feb. 16, 1995, now abandoned.
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Foreign Referenced Citations (7)
Number |
Date |
Country |
546119 |
Aug 1985 |
AUX |
0 377 235 A1 |
Nov 1990 |
EPX |
2 043 747 |
Aug 1980 |
GBX |
2 247 477 |
Apr 1992 |
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Continuations (2)
|
Number |
Date |
Country |
Parent |
643909 |
May 1996 |
|
Parent |
390322 |
Feb 1995 |
|