Claims
- 1. An apparatus for transceiving a signal through a series of downhole tools in a downhole tool string, wherein said downhole tool string comprises a first downhole tool, a second downhole tool, and at least one intermediate downhole tool between said first and said second downhole tools, and wherein said intermediate downhole tool is not configured to convey said signal along its length, said apparatus comprising:
a first transceiver ring coupled to said first downhole tool for transceiving said signal; a second transceiver ring coupled to said second downhole tool for transceiving said signal; and a cable coupled to each of said rings and substantially retained within a central bore of said intermediate downhole tool for communicating said signal between said rings.
- 2. A system for transceiving data between downhole tools located on a drill string, said system comprising:
a drill string comprising a proximal end, a distal end, and a length; a first cable substantially retained by a central bore of said drill string to transmit a signal carrying first information between said proximal end and said distal end over a first portion of said length, said first portion of said length comprising a plurality of downhole tools, wherein said plurality of downhole tools are not configured to convey said signal along their lengths; a first transmission element coupled to said first cable to convert said signal to a magnetic field; a second transmission element proximate said first transmission element to receive said magnetic field and convert said magnetic field into a second signal carrying said first information; a second cable coupled to said second transmission element and substantially retained by a central bore of said drill string to transmit said second signal between said proximal end and said distal end over a second portion of said length, said second portion of said length comprising a plurality of downhole tools, wherein said plurality of downhole tools are not configured to convey said signal along their lengths.
- 3. The system of claim 2, wherein each of said downhole tools comprises a first end and a second end, wherein said first end of a first downhole tool is connected to said second end of a second downhole tool at a torque producing interface.
- 4. The system of claim 3, wherein said first transmission element is coupled to said first end of said first downhole tool at said torque producing interface, and wherein said second transmission element is coupled to said second end of said second downhole tool at said torque producing interface.
- 5. The system of claim 2, wherein said drill string further comprises a plurality of downhole tools connected at a plurality of torque producing interfaces, each said downhole tool comprising:
a cylindrical body having an outer wall and a central bore; a first end attached to said body, said first end having a first torque producing surface, a second torque producing surface, and external tapered threads; and a second end attached to said body opposite said first end, said second end having a first torque producing plane, a second torque producing plane, and internal tapered threads.
- 6. The system of claim 5, wherein said first end integrates said first transmission element at said second torque producing surface.
- 7. The system of claim 5, wherein said first end further comprises a first annular recess integrated into said second torque producing surface for receiving said first transmission element.
- 8. The system of claim 7, wherein said first transmission element is retained in said first annular recess by a press fit.
- 9. The system of claim 5, wherein said second end integrates said second transmission element at said second torque producing plane.
- 10. The system of claim 5, wherein said second end further comprises a second annular recess integrated into said second torque producing plane for receiving said second transmission element.
- 11. The system of claim 10, wherein said second transmission element is retained in said second annular recess by a press fit.
- 12. The system of claim 7, wherein said cylindrical body further comprises a first channel having a first opening and a second opening, said first channel substantially extending from said second torque producing surface to said central bore.
- 13. The system of claim 12, wherein said first opening substantially adjoins said first annular recess.
- 14. The system of claim 10, wherein said cylindrical body further comprises a second channel having a first hole and a second hole, said second channel substantially extending from said second torque producing plane to said central bore.
- 15. The system of claim 14, wherein said second opening substantially adjoins said second annular recess.
- 16. The system of claim 5, said cylindrical body further comprising at least one retaining channel at least partially integrated into said outer wall for retaining said cable.
- 17. The system of claim 16, wherein said cable is retained in said retaining channel by tension.
- 18. The system of claim 5, wherein said downhole tool is selected from the group consisting of casings, drill pipe, heavy-weight drill pipe, drill collars, drill bit subs, transmission links, reamers, stabilizers, motors, turbines, mud hammers, Jars, Kellys, blow-out preventers, steering subs and drill bits.
- 19. The system of claim 2, wherein each of said first and said second cables comprises:
an outer tube; a conductive core disposed within said outer tube; and a dielectric sheath surrounding said conductive core.
- 20. The system of claim 19, further comprising a conductive sheath disposed between said outer tube and said dielectric sheath.
- 21. The system of claim 19, wherein said outer tube comprises rigid metal.
- 22. The system of claim 21, wherein said outer tube comprises stainless steel.
- 23. The system of claim 2, wherein each of said first and said second transmission elements comprises:
a housing; a magnetically conductive trough disposed within said housing; an electrically conductive coil disposed within said trough; and a connector coupled to said cable and to at least one of said conductive element and said housing.
- 24. The system of claim 23, wherein each of said first and said second transmission elements further comprise an adhesive disposed between said housing, said trough and said conductive element for retaining said trough and said conductive element in a fixed relationship relative to said housing and for resisting abrasion of said transmission elements.
- 25. The system of claim 24, wherein said adhesive comprises at least one of silica, aluminum oxide and urethane.
- 26. The system of claim 23, wherein said housing comprises a ring having a substantially U-shaped trough.
- 27. The system of claim 26, wherein said ring is steel.
- 28. The system of claim 26, wherein said ring further comprises circumferential ridges integrated into an outer surface of said ring to enhance connection of said ring to at least one of said first annular recess and said second annular recess.
- 29. The system of claim 23, wherein said trough comprises ferrite.
- 30. The system of claim 29, wherein said ferrite is segmented.
- 31. The system of claim 23, wherein said conductive element comprises a loop of wire.
- 32. The system of claim 31, wherein said wire is copper.
- 33. The system of claim 31, wherein said wire is silver plated, copper clad steel.
- 34. The system of claim 31, wherein said wire is insulated.
- 35. The system of claim 34, wherein said wire is insulated with at least one of high density polyethylene and polymerized tetrafluoroethane.
- 36. The system of claim 23 wherein said connector further comprises a first contact and a second contact.
- 37. The system of claim 36, wherein said first contact adjoins said connector to said conductive element.
- 38. The system of claim 36, wherein said second contact adjoins said connector to said housing.
- 39. A data transmission network for transceiving information between downhole tools located on a drill string, the data transmission network comprising:
a first downhole tool having a first proximal end, a first distal end and a first central bore; a second downhole tool having a second proximal end, a second distal end and a second central bore; at least one intermediate downhole tool not configured to convey a signal along its length, wherein each said at least one intermediate downhole tool is located intermediate said first downhole tool and said second downhole tool, each said at least one intermediate downhole tool having an intermediate central bore, an intermediate proximal end and an intermediate distal end; a first cable to transceive a first electrical signal carrying first information between ground level and said first downhole tool, wherein a portion of said first cable is disposed within said first central bore; a second cable to transceive a second electrical signal carrying said first information between one of said at least one intermediate downhole tool and said second downhole tool, wherein a portion of said second cable is disposed within said intermediate central bore; a first transmission element mounted proximate said first distal end and coupled to said first cable to transduce said first electrical signal to a magnetic signal; and a second transmission element mounted proximate said intermediate proximal end and coupled to said second cable to transduce said magnetic signal to said second electrical signal and to transceive said second electrical signal along said second cable.
- 40. The network of claim 39, wherein each of said first proximal end and said second proximal end further comprises a first torque producing surface, a second torque producing surface, and external tapered threads attached to each of said first and second proximal ends.
- 41. The network of claim 40, wherein each of said first distal end and said second distal end further comprises a first torque producing plane, a second torque producing plane, and internal tapered threads attached to each of said first and second distal ends.
- 42. The network of claim 41, wherein at least one of said first and said second proximal ends integrates said first transmission element into at least one of said second torque producing surfaces.
- 43. The network of claim 41, wherein at least one of said first and said second proximal ends further comprises a first annular recess integrated into said second torque producing surface for receiving said first transmission element.
- 44. The network of claim 43, wherein said first transmission element is retained in said first annular recess by a press fit.
- 45. The network of claim 41, wherein at least one of said first and said second distal ends integrates said second transmission element into at least one of said second torque producing planes.
- 46. The network of claim 41, wherein at least one of said first and said second distal ends further comprises a second annular recess integrated into at least one of said second torque producing planes for receiving said second transmission element.
- 47. The network of claim 46, wherein said second transmission element is retained in said second annular recess by a press fit.
- 48. The network of claim 43, wherein said cylindrical body further comprises a first channel having a first opening and a second opening, said first channel substantially extending from said second torque producing surface to said central bore.
- 49. The network of claim 48, wherein said first opening substantially adjoins said first annular recess.
- 50. The network of claim 46, wherein said cylindrical body further comprises a second channel having a first hole and a second hole, said second channel substantially extending from said second torque producing plane to said central bore.
- 51. The network of claim 50, wherein said second opening substantially adjoins said second annular recess.
- 52. The network of claim 39, said cylindrical body further comprising at least one retaining channel at least partially integrated into said outer wall for retaining said cable.
- 53. The network of claim 52, wherein said cable is retained in said retaining channel by tension.
- 54. The network of claim 39, wherein each of said first and said second downhole tools is selected from the group consisting of casings, drill pipe, heavy-weight drill pipe, drill collars, drill bit subs, transmission links, reamers, stabilizers, motors, turbines, mud hammers, Jars, Kellys, blow-but preventers, steering subs and drill bits.
- 55. The network of claim 39, wherein each of said first and said second cables comprises:
an outer tube; a conductive core disposed within said outer tube; and a dielectric sheath surrounding said conductive core.
- 56. The network of claim 55, further comprising a conductive sheath disposed between said outer tube and said dielectric sheath.
- 57. The network of claim 55, wherein said outer tube comprises rigid metal.
- 58. The network of claim 57, wherein said outer tube comprises stainless steel.
- 59. The network of claim 39, wherein each of said first and said second transmission elements comprises:
a housing; a magnetically conductive trough disposed within said housing; an electrically conductive coil disposed within said trough; and a connector coupled to said cable and to at least one of said conductive coil and said housing.
- 60. The network of claim 59, wherein each of said first and said second transmission elements further comprises an adhesive disposed between at least two of said housing, said trough and said conductive coil for retaining said trough and said conductive coil in a fixed relationship relative to said housing and for resisting abrasion of said housing, said trough and said conductive coil.
- 61. The network of claim 60, wherein said adhesive comprises at least one of silica, aluminum oxide and urethane.
- 62. The network of claim 59, wherein said housing further comprises a ring having a substantially U-shaped trough.
- 63. The network of claim 62, wherein said ring is steel.
- 64. The network of claim 62, further comprising circumferential ridges integrated into an outer surface of said ring to facilitate retention of said ring by at least one of said first downhole tool and said second downhole tool.
- 65. The network of claim 59, wherein said trough comprises ferrite.
- 66. The network of claim 65, wherein said ferrite is segmented.
- 67. The network of claim 59, wherein said conductive coil comprises wire.
- 68. The conductive coil of claim 67, wherein said wire is copper.
- 69. The network of claim 67, wherein said wire is silver plated, copper clad steel.
- 70. The network of claim 67, wherein said wire is insulated.
- 71. The network of claim 70, wherein said insulation comprises at least one of high density polyethylene and polymerized tetrafluoroethane.
- 72. The network of claim 59, wherein said connector further comprises a first contact and a second contact.
- 73. The network of claim 72, wherein said first contact adjoins said connector to said conductive coil.
- 74. The network of claim 72, wherein said second contact adjoins said connector to said housing.
- 75. A method for transceiving data through a series of downhole tools located on a drill string, said method comprising the steps for:
annexing to a first downhole tool a first transmission element and cable system configured to transduce a first electrical signal carrying first information to a magnetic field; attaching to a second downhole tool a second transmission element and cable system configured to detect said magnetic field, transduce said magnetic field to a second electrical signal carrying said first information, and transceive said second electrical signal between said second downhole tool and a third downhole tool, wherein a plurality of intermediate downhole tools are located intermediate said second downhole tool and said third downhole tool, said plurality of intermediate downhole tools not configured to convey a signal along their lengths; and connecting said first downhole tool to said second downhole tool such that said first transmission element and cable system is located substantially proximate said second transmission element and cable system to enable said magnetic field to be detected, transduced and transceived by said second transmission element and cable system.
- 76. The method of claim 75, wherein each of said first downhole tool and said second downhole tool comprises:
an elongate cylindrical body; a first end attached to said body, said first end having a first torque producing surface, a second torque producing surface and external tapered threads; and a second end attached to said body opposite said first end, said second end having a first torque producing plane, a second torque producing plane and internal tapered threads.
- 77. The method of claim 76, wherein said attaching step further comprises integrating at least a portion of said first transmission element and cable system into said second torque producing surface.
- 78. The method of claim 77, wherein said annexing step further comprises integrating at least a portion of said second transmission element and cable system into said second torque producing plane.
- 79. The method of claim 76, wherein said connecting step further comprises integrating said first end of said first downhole tool with said second end of said second downhole tool such that said second torque producing surface is immediately adjacent said second torque producing plane.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present patent application claims the benefit of the filing date of the U.S. Patent Application to David R. Hall, et al., filed Feb. 3, 2003, entitled “Data Transmission System for a Downhole Component,” which claims priority to U.S. Provisional Patent Application Serial No. 60/444,100 to David R. Hall, et al., filed Jan. 31, 2003, also entitled “Data Transmission System for a Downhole Component,”both of which are hereby incorporated in their entireties by reference.
FEDERAL RESEARCH STATEMENT
[0002] This invention was made with government support under Contract No. DE-FC26-97FT343656 awarded by the U.S. Department of Energy. The government has certain rights in the invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60444100 |
Jan 2003 |
US |