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Digital induction logging tool 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01V-003/28
  • G01R-025/00
  • H03M-001/00
출원번호 US-0271367 (1981-06-08)
발명자 / 주소
  • Sinclair Paul L. (Houston TX)
출원인 / 주소
  • Schlumberger Technology Corporation (Houston TX 02)
인용정보 피인용 횟수 : 43  인용 특허 : 7

초록

A digital induction resistivity logging tool is disclosed for digitally measuring both the in-phase (R) and quadrature (X) phase components in a receiver signal generated in response to transmitter induced currents flowing in the earth\s sub-surface formations. The digital indication tool includes a

대표청구항

A digital induction resistivity logging tool operated in conjunction with surface equipment, said tool generating correlated floating point digital signals of phase quadrature components of a signal representative of a characteristic of sub-surface formations, the tool comprising: (a) a system clock

이 특허에 인용된 특허 (7)

  1. Vieira David D. (Puyricard FRX) Dinard Jacques (Manosque FRX) Stssel Alain (Aix en Provence FRX), Control apparatus for eddy current non-destructive testing using a digital compensating circuit.
  2. Payne ; George C., Ferrous/non-ferrous metal detector using sampling.
  3. Flora John H. (Lynchburg VA) Gruber Henry T. (Columbus OH), Multiple frequency digital eddy current inspection system.
  4. Sanderson Albert E. (Carlisle MA), Phase different detector and display.
  5. Westell William E. (Weston MA), Ratio detector.
  6. Howlett ; Donald L., System and method for digitally transmitting well logging information.
  7. Eberwein Valery D. (Houston TX), System and method for well-logging.

이 특허를 인용한 특허 (43)

  1. Slates, Richard D., Apparatus for determining a gap between a proximity probe component and a conductive target material.
  2. Slates, Richard D., Apparatus for determining dynamic gaps between a proximity probe and a conductive target material.
  3. Slates, Richard D., Apparatus for determining gaps between a proximity probe and a conductive target material.
  4. Fanini Otto N. (Stafford TX) Fabris Antonio (Houston TX), Apparatus for measuring resistivity of an earth formation using delta-sigma digital signal generation and sigma-delta di.
  5. Mizuno, Morio, Bore location system.
  6. Mizuno, Morio, Bore location system.
  7. Mizuno,Morio, Bore location system.
  8. Mizuno,Morio, Bore location system.
  9. Liu, Zhipeng, Borehole image reconstruction using inversion and tool spatial sensitivity functions.
  10. Baum, David; Urquhart, Scott A.; MacInnis, Scott C., Circuits and methods for monitoring current in geophysical survey systems.
  11. Meyer ; Jr. Wallace Harold, Determination of dielectric properties with propagation resistivity tools using both real and imaginary components of me.
  12. Rich Slates, Digital eddy current proximity system: apparatus and method.
  13. Slates, Richard D., Digital eddy current proximity system: apparatus and method.
  14. Hollmann, Joseph L.; Kirkwood, Andrew, High resolution LWD imaging.
  15. Moore, Robert A, Logging while drilling tool for obtaining azimuthally sensitive formation resistivity measurements.
  16. Moore,Robert A, Measurement tool for obtaining tool face on a rotating drill collar.
  17. Thompson Larry W. ; Wisler Macmillan M., Method and apparatus for determining influence of mutual magnetic coupling in electromagnetic propagation tools.
  18. Thompson Larry W. ; Wisler Macmillan M., Method and apparatus for making electromagnetic induction measurements through a drill collar.
  19. Meyer ; Jr. Wallace Harold ; Thompson Larry Wayne ; Wisler Macmillan M. ; Wu Jian-Quan, Method and apparatus for measuring electromagnetic properties of materials in borehole environs and simultaneously determining the quality of the measurements.
  20. Forgang Stanislav (Houston TX) Fanini Otto N. (Stafford TX), Method and apparatus for reducing signal-phase error in induction well logging instruments.
  21. Slates, Richard D., Method for digitally measuring electrical impedance.
  22. Slates, Richard D., Method for measuring a characteristic of a conductive target material using a proximity probe.
  23. Slates, Rich, Method for measuring a gap between a proximity probe and a conductive target material.
  24. Slates, Richard D., Method for measuring a gap between a proximity probe and a conductive target material.
  25. Slates, Richard D., Method for measuring a gap between a proximity probe and a conductive target material.
  26. Slates, Richard D., Method for measuring a gap between a proximity probe and a conductive target material.
  27. Slates, Richard D., Method for measuring a gap between a proximity probe and a conductive target material.
  28. Slates, Richard D., Method for measuring a gap between a proximity probe and a conductive target material.
  29. Slates, Richard D., Method for measuring a gap between a proximity probe and a conductive target material.
  30. Slates, Richard D., Method for measuring a position of a conductive target material.
  31. Robison, Clark E.; Skinner, Neal G.; Goiffon, John J.; Pool, Charles M., Power discriminating systems.
  32. Robison,Clark E.; Skinner,Neal G.; Goiffon,John J.; Pool,Charles M., Power discriminating systems.
  33. Sugiura, Junichi, Probablistic imaging with azimuthally sensitive MWD/LWD sensors.
  34. Day, Brian A.; Ward, Robert E., Programmable counters for setting bus arbitration delays involves counting clock cycles equal to a count number loaded from a memory.
  35. Coulston, Stephen J., Systems and methods for implementing different modes of communication on a communication line between surface and downhole equipment.
  36. Chu, Gyo Soo, Temperature sensing circuit and semiconductor memory device using the same.
  37. Meyer ; Jr. Wallace H. (Bellaire TX), Time-variant filter coefficients.
  38. Meyer ; Jr. Wallace Harold ; Thompson Larry Wayne ; Wisler Macmillan M. ; Wu Jian-Quan, Use of raw amplitude and phase in propagation resistivity measurements to measure borehole environmental parameters.
  39. Shams, Qamar A.; Sutton, John F., Variable permeability magnetometer systems and methods for aerospace applications.
  40. Allen Robert S. ; Potter ; Sr. Thomas R. ; Seabury Thomas W., Vehicle detector with operational display.
  41. Moore,Robert A, Well logging apparatus for obtaining azimuthally sensitive formation resistivity measurements.
  42. Forgang, Stanislav Wilhelm; Gold, Randy; Jiang, Zhiyong; Yanzig, Carlos A., Wellbore logging performance verification method and apparatus.
  43. Forgang, Stanislav Wilhelm; Gold, Randy; Jiang, Zhiyong; Yanzig, Carlos A., Wellbore logging performance verification method and apparatus.
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