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 portion of said bit body; at least one temperature sensor for monitoring at least one temperature condition of said improved drill bit during drilling operations; and at least one journal bearing assembly carried by at least one of said plurality of bit legs; at least one temperature sensor cavity formed in at least one of said plurality of bit legs, and adapted for receiving, carrying, and locating said at least one temperature sensor in a particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; wherein the position of said temperature sensor cavity relative to said at least one of said plurality of bit legs allows, during drilling operations, said at least one temperature sensor to measure primarily heat generated by said at least one journal bearing, but not other wellbore heat sources.
- 2. An improved drill bit for use in drilling operations, according to claim 1:wherein said at least one temperature sensor comprises at least one temperature sensor for each of said plurality of bit legs; and wherein said at least one temperature sensor cavity comprises at least one temperature sensor cavity formed in each of said plurality of bit legs which is adapted for receiving, carrying, and locating a particular temperature sensor in a particular position relative to a particular bit leg, and which is empirically determined to optimize temperature sensor discrimination for that particular bit leg.
- 3. An improved drill bit for use in drilling operating, according to claim 1:wherein said at least one temperature sensor cavity comprises at least one temperature sensor cavity formed in a particular one of said plurality of bit legs which is adapted for receiving, carrying, and locating said at least one temperature sensor in a particular position relative to said particular one of said plurality of bit legs, and which is empirically determined to optimize temperature sensor discrimination.
- 4. An improved drill bit for use in drilling operations, according to claim 3:wherein each of said plurality of bit legs include a bearing head for engagement with a rolling cone cutter; and wherein said particular position comprises a medial position within said bearing head.
- 5. An improved drill bit, according to claim 4:wherein said bearing head is substantially cylindrically symmetrical along a centerline; and wherein said particular position comprises a medial position within said bearing head proximate said centerline.
- 6. An improved drill bit according to claim 5:wherein said bearing head extends between a lower extent of said bit leg and a thrust face; and wherein said particular position comprises a medial position within said bearing head about said centerline between said lower extent of said bit body and said thrust face.
- 7. 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 portion of said bit body; at least one temperature sensor for monitoring at least one temperature condition of said improved drill bit during drilling operations; at least one temperature sensor cavity formed in said bit body and adapted for receiving, carrying, and locating said at least one temperature sensor in a particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; wherein said improved drill bit includes a lubrication system for providing lubrication for each of said rolling cone cutters; and wherein said at least one temperature sensor is not in communication with said lubrication system.
- 8. An improved drill bit according to claim 7, further comprising:pressure isolator members to maintain at least said at least one temperature sensor cavity in pressure isolation from said wellbore.
- 9. 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 portion of said bit body; at least one temperature sensor for monitoring at least one temperature condition of said improved drill bit during drilling operations; at least one temperature sensor cavity formed in said bit body and adapted for receiving, carrying, and locating said at least one temperature sensor in a particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; a service bay formed in said bit body to allow access to at least said at least one temperature sensor cavity.
- 10. A method of performing drilling operations in a wellbore, comprising:providing a bit body including a plurality of bit legs, each supporting a rolling cone cutter; providing a coupling member formed at an upper portion of said bit body; providing at least one temperature sensor for monitoring at least one temperature condition of said bit body during drilling operations; empirically determining a particular position for said at least one temperature sensor well which optimizes temperature sensor discrimination; forming at least one temperature sensor well in said bit body at said particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; locating said at least one temperature sensor in said at least one temperature sensor well; utilizing said improved drill bit during drilling operations in said wellbore; and utilizing said at least one temperature sensor to sense at least one temperature during drilling operations.
- 11. A method of performing drilling operations in a wellbore, according to claim 10:wherein said step of providing at least one temperature sensor comprises providing at least one temperature sensor for each of said plurality of bit legs; and wherein said step of forming at least one temperature sensor well comprises forming at least one temperature sensor cavity formed in each of said plurality of bit legs which is adapted for receiving, carrying, and locating a particular temperature sensor in a particular position relative to a particular bit leg, and which is empirically determined to optimize temperature sensor discrimination for that particular bit leg.
- 12. A method of performing drilling operations in a wellbore, according to claim 10:wherein said step of forming at least one temperature sensor well comprises forming at least one temperature sensor cavity formed in a particular one of said plurality of bit legs adapted for receiving, carrying, and locating said at least one temperature sensor in a particular position relative to said particular one of said plurality of bit legs which is empirically determined to optimize temperature sensor discrimination.
- 13. A method of performing drilling operations in a wellbore, according to claim 12:wherein each of said plurality of bit legs include a bearing head for engagement with a rolling cone cutter; and wherein said particular position comprises a medial position within said bearing head.
- 14. A method of performing drilling operations in a wellbore, according to claim 13:wherein said bearing head is substantially cylindrically symmetrical along a centerline; and wherein said particular position comprises a medial position within said bearing head proximate said centerline.
- 15. A method of performing drilling operations in a wellbore, according to claim 14:wherein said bearing head extends between a lower extent of said bit leg and a thrust face; and wherein said particular position comprises a medial position within said bearing head about said centerline between said lower extent of said bit body and said thrust face.
- 16. A method of performing drilling operations in a wellbore, according to claim 10, further comprises:wherein said improved drill bit includes a lubrication system for providing lubrication for each of said rolling cone cutters; wherein said at least one temperature sensor is not in communication with said lubrication system.
- 17. A method of performing drilling operations in a wellbore, according to claim 10, further comprising:providing at least one service bay formed in said bit body to allow access to said at least said temperature sensor cavity.
- 18. A method of providing drilling operations, according to claim 10, further comprising:providing pressure isolator members to maintain at least said at least one temperature sensor cavity in pressure isolation from said wellbore.
- 19. A method of performing drilling operations in a wellbore, comprising:providing a bit body including a cutting structure; providing a coupling member formed at an upper portion of said bit body; providing at least one temperature sensor for monitoring at least one temperature condition of said bit body during drilling operations; empirically determining a particular position for said at least one temperature sensor well which optimizes temperature sensor discrimination; forming at least one temperature sensor well in said bit body at said particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; locating said at least one temperature sensor in said at least one temperature sensor well; utilizing said improved drill bit during drilling operations in said wellbore; and utilizing said at least one temperature sensor for monitoring at least one temperature condition during drilling operations.
- 20. 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; at least one lubrication system, including lubrication pathways formed in said bit body, and utilized to lubricate each rolling cone cutter; a coupling member formed at an upper portion of said bit body; at least one operating condition sensor for monitoring at least one operating condition of said improved drill bit during drilling operations and producing an electrical output signal corresponding thereto; a plurality of electrical conductors for coupling electrically-activated components carried by said improved drill bit including said at least one operating condition sensor; a plurality of wire pathways formed in said bit body independent of said at least one lubrication system, wherein said plurality of wire pathways are not in communication with said lubrication pathways; and a plurality of interconnecting fluid-impermeable tube segments coupled to said bit body and communicatively aligned with said plurality of wire pathways to route and protect said plurality of electrical conductors.
- 21. An improved drill bit according to claim 20, further comprising:wherein said at least one operating condition sensor comprises at least one operating condition sensor for each of said plurality of bit legs; and wherein said at least one fluid-permeable tube segment comprises a plurality of fluid-impermeable tube segments coupled to said bit body and communicatively aligned with said plurality of wire pathways to route and protect said plurality of electrical conductors, including a fluid-impermeable tube segment extending from a wire pathway formed in each of said plurality of bit legs to a segment connector.
- 22. An improved drill bit according to claim 20, further comprising:wherein said at least one operating condition sensor comprises at least one temperature sensor for each of said plurality of bit legs; wherein said at least one fluid-impermeable tube segment comprises a plurality of fluid-impermeable tube segments coupled to said bit body and communicatively aligned with said plurality of wire pathways to route and protect said plurality of electrical conductors, including: (a) a plurality of fluid-impermeable tube segments, each communicating with a wire pathway formed in each of said plurality of bit legs at a first end portion; and (b) a segment connector adapted for coupling to a second end portion of said plurality of fluid-impermeable tube segments.
- 23. An improved drill bit according to claim 22:wherein said a plurality of fluid-impermeable tube segments are positioned substantially transverse to a centerline of said improved drill bit.
- 24. An improved drill bit according to claim 22:wherein said segment connector is substantially centrally located relative to said a plurality of fluid-impermeable tube segments.
- 25. An improved drill bit according to claim 22:wherein each of said plurality of fluid-impermeable tube segments are angularly substantially equidistant from adjoining tube segments.
- 26. 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 portion of said bit body; at least one temperature sensor for monitoring at least one temperature condition of said improved drill bit during drilling operations; means for locating said at least one temperature sensor in a particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; wherein said bearing head extends between a lower extent of said bit leg and a thrust face; and wherein said particular position comprises a medial position within said bearing head about said centerline between said lower extent of said bit body and said thrust face.
- 27. 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 portion of said bit body; at least one temperature sensor for monitoring at least one temperature condition of said improved drill bit during drilling operations; means for locating said at least one temperature sensor in a particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; wherein said improved drill bit includes a lubrication system for providing lubrication for each of said rolling cone cutters; and wherein said at least one temperature sensor is not in communication with said lubrication system.
- 28. 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 portion of said bit body; at least one temperature sensor for monitoring at least one temperature condition of said improved drill bit during drilling operations; means for locating said at least one temperature sensor in a particular position relative to said bit body which is empirically determined to optimize temperature sensor discrimination; and pressure isolator members to maintain at least said at least one temperature means for locating in pressure isolation from said wellbore.
- 29. A method of performing drilling operations in a wellbore, comprising:providing a bit body including a plurality of bit legs, each supporting a rolling cone cutter; providing a coupling member formed at an upper portion of said bit body; providing at least one temperature sensor for monitoring at least one temperature condition of said bit body during drilling operations; empirically determining a particular position for said at least one temperature sensor well which optimizes temperature sensor discrimination; locating said at least one temperature sensor in said particular position; utilizing said improved drill bit during drilling operations in said wellbore; and utilizing said at least one temperature sensor to sense at least one temperature during drilling operations.
- 30. A method of performing drilling operations in a wellbore, according to claim 29:wherein said step of providing at least one temperature sensor comprises providing at least one temperature sensor for each of said plurality of bit legs.
- 31. A method of performing drilling operations in a wellbore, according to claim 30:wherein each of said plurality of bit legs include a bearing head for engagement with a rolling cone cutter; and wherein said particular position comprises a medial position within said bearing head.
- 32. A method of performing drilling operations in a wellbore, according to claim 31:wherein said bearing head is substantially cylindrically symmetrical along a centerline; and wherein said particular position comprises a medial position within said bearing head proximate said centerline.
- 33. A method of performing drilling operations in a wellbore, according to claim 32:wherein said bearing head extends between a lower extent of said bit leg and a thrust face; and wherein said particular position comprises a medial position within said bearing head about said centerline between said lower extent of said bit body and said thrust face.
- 34. A method of performing drilling operations in a wellbore, according to claim 29, further comprises:wherein said improved drill bit includes a lubrication system for providing lubrication for each of said rolling cone cutters; wherein said at least one temperature sensor is not in communication with said lubrication system.
- 35. A method of performing drilling operations in a wellbore, according to claim 29, further comprising:providing at least one service bay formed in said bit body to allow access to said at least said temperature sensor cavity.
- 36. 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 lubrication subassembly, including lubrication pathways; a coupling member formed at an upper portion of said bit body; at least one operating condition sensor for monitoring at least one operating condition of said improved drill bit during drilling operations and producing an electrical output signal corresponding thereto; a plurality of electrical conductors for coupling electrically-activated components carried by said improved drill bit including said at least one operating condition sensor; a plurality of wire pathways formed in said bit body which are not communication with said lubrication pathways; and a conduit system aligned with said plurality of wire pathways and extending throughout said wire pathways to route and protect said plurality of electrical conductors.
- 37. An improved drill bit according to claim 36, further comprising:wherein said at least one operating condition sensor comprises at least one operating condition sensor for each of said plurality of bit legs.
- 38. An improved drill bit according to claim 36, further comprising:wherein said at least one operating condition sensor comprises at least one temperature sensor for each of said plurality of bit legs.
- 39. A method of performing drilling operations in a wellbore, comprising:providing a bit body including a plurality of bit legs, each supporting a rolling cone cutter; providing at least one lubrication subsystem, including at least one lubrication pathway; providing a coupling member formed at an upper portion of said bit body; providing an at least one operating condition sensor for monitoring at least one operating condition of said bit during drilling operations; providing a plurality of electrical conductors for coupling electrically-activated components carried by said drill bit including said at least one operating conditions; providing a plurality of wire pathways formed in said bit body; maintaining said plurality of wire pathways out of communication with said lubrication pathways; and providing at least one fluid-impermeable wire covering aligned with said plurality of wire pathways to route and protect said plurality of electrical conductors: locating said at least one temperature sensor in said at least one temperature sensor well; locating said at least one temperature sensor in said at least one temperature sensor well; utilizing said improved drill bit during drilling operations in said wellbore; utilizing said at least one operating condition sensor to sense at least one temperature during drilling operations.
- 40. A method of performing drilling operations in a wellbore, according to claim 39:wherein said step of providing at least one operating condition sensor comprises providing at least one operating condition sensor for each of said plurality of bit legs; and wherein said step of providing at least one fluid-impermeable wire covering comprises providing a wire covering coupled to said bit body and communicatively aligned with said plurality of wire pathways to route and protect said plurality of electrical conductors.
CROSS REFERENCE TO RELATED APPLICATION
This is a Division of application Ser. No. 09/012,803 filed on Jan. 23, 1998, for METHOD AND APPARATUS FOR MONITORING AND RECORDING OF THE OPERATING CONDITION OF A DOWNHOLE DRILL BIT DURING DRILLING OPERATIONS U.S. Pat. No. 6,230,822 which is a continuation-in-part of prior application Ser. No. 08/760,122, filed Dec. 3, 1996, now U.S. Pat. No. 5,813,480, issued 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, abandoned entitled Method and Apparatus for Monitoring and Recording of Operating 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, 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. These prior applications are incorporated herein by reference as if fully set forth.
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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 (1)
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09/012803 |
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