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Liquefaction process and apparatus 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F25J-001/00
출원번호 US-0951725 (2001-09-14)
우선권정보 GB-0026297 (1997-12-11)
발명자 / 주소
  • Christopher A. T. Dubar AU
출원인 / 주소
  • BHP Petroleum PTY, Ltd. AU
대리인 / 주소
    Dykema Gossett PLLC
인용정보 피인용 횟수 : 37  인용 특허 : 7

초록

Apparatus for liquefying natural gas, comprising a series of heat exchangers for cooling the natural gas in countercurrent heat exchange relationship with a refrigerant, compression means for compressing the refrigerant, expansion means for isentropically expanding at least two separate streams of t

대표청구항

1. Apparatus for liquefying natural gas, comprising a series of heat exchangers for cooling the natural gas in countercurrent heat exchange relationship with a refrigerant, compression means for compressing the refrigerant, expansion means for isentropically expanding at least two separate streams o

이 특허에 인용된 특허 (7)

  1. Cole Eric T. ; Bowen Ronald R., Cascade refrigeration process for liquefaction of natural gas.
  2. Paradowski, Henri; Leroux, Didier, Method and apparatus for cooling and liquefying at least one gas with a low boiling point, such as for example natural gas.
  3. Low William R. (Bartlesville OK), Method and apparatus for liquefaction of natural gas.
  4. DeLong Bradley W. (Bartlesville OK), Method for cooling normally gaseous material.
  5. Low William R. (1000 Grandview Rd. Bartlesville OK 74006) Andress Donald L. (306 Stoneridge Bartlesville OK 74006) Houser Clarence G. (1803 SE. Harned Dr. Bartlesville OK 74006), Method of load distribution in a cascaded refrigeration process.
  6. Davis Robert N. (R.D. #2 - Box 326 Breinigsville PA 18031) Newton Charles L. (Bay Point Ct. Panama City FL 32407), Natural gas liquefaction process using low level high level and absorption refrigeration cycles.
  7. Capron Pierre,FRX ; Rojey Alexandre,FRX, Process and device for liquefying a gaseous mixture such as a natural gas in two steps.

이 특허를 인용한 특허 (37)

  1. Hart, Katherine; Held, Timothy James, Automated mass management control.
  2. Hart, Katherine; Held, Timothy James, Automated mass management control.
  3. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao, Carbon dioxide refrigeration cycle.
  4. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao, Driven starter pump and start sequence.
  5. Held, Timothy James; Vermeersch, Michael; Xie, Tao, Driven starter pump and start sequence.
  6. Holt, Christopher G.; Martin, William L., Dual end gear fluid drive starter.
  7. Held, Timothy J.; Miller, Jason D., Heat engine and heat to electricity systems and methods for working fluid fill system.
  8. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Vermeersch, Michael; Xie, Tao, Heat engine and heat to electricity systems and methods with working fluid mass management control.
  9. Held, Timothy James; Hostler, Stephen; Miller, Jason D.; Vermeersch, Michael; Xie, Tao, Heat engine and heat to electricity systems and methods with working fluid mass management control.
  10. Held, Timothy James, Heat engine cycles for high ambient conditions.
  11. Kacludis, Alexander Steven; Hostler, Stephen R.; Zakem, Steve B., Heat engine system with a supercritical working fluid and processes thereof.
  12. Held, Timothy James, Heat engines with cascade cycles.
  13. Turner, Terry D.; McKellar, Michael G., Heat exchanger and related methods.
  14. Gurin, Michael H., Heat pump with integral solar collector.
  15. Held, Timothy James, Hot day cycle.
  16. Roberts,Mark Julian; Spilsbury,Christopher Geoffrey; Brostow,Adam Adrian, Hybrid gas liquefaction cycle with multiple expanders.
  17. Gurin, Michael H., Hybrid power systems.
  18. Roberts, Mark Julian; Brostow, Adam Adrian, Liquefaction method and system.
  19. Roberts, Mark Julian; Brostow, Adam Adrian, Liquefaction method and system.
  20. Vandor, David; Greenberg, Ralph, Method and system for the small-scale production of liquified natural gas (LNG) from low-pressure gas.
  21. Vermeersch, Michael Louis; Bowan, Brett A.; Khairnar, Swapnil, Methods for reducing wear on components of a heat engine system at startup.
  22. Baudat, Ned P.; Martinez, Bobby D.; Hahn, Paul R.; Weyermann, Hans P.; Qualls, Wesley R., Motor driven compressor system for natural gas liquefaction.
  23. Martin, William L.; Holt, Christopher G., Multi-compressor string with multiple variable speed fluid drives.
  24. Minta, Moses, Natural gas liquefaction process.
  25. Minta, Moses; Stone, John B.; Feist, Raymond Scott, Natural gas liquefaction processes with feed gas refrigerant cooling loops.
  26. Sites, Omar Angus, Parallel dynamic compressor arrangement and methods related thereto.
  27. Bowan, Brett A., Process for controlling a power turbine throttle valve during a supercritical carbon dioxide rankine cycle.
  28. Jones, Jr.,Richard; Ward,Patrick B., Reduced carbon dioxide emission system and method for providing power for refrigerant compression and electrical power for a light hydrocarbon gas liquefaction process.
  29. Jones, Jr.,Richard; Ward,Patrick B., Reduced carbon dioxide emission system and method for providing power for refrigerant compression and electrical power for a light hydrocarbon gas liquefaction process using cooled air injection to t.
  30. Turner, Terry D.; McKellar, Michael G.; Wilding, Bruce M., Sublimation systems and associated methods.
  31. Xie, Tao; Vermeersch, Michael; Held, Timothy, Supercritical carbon dioxide power cycle for waste heat recovery.
  32. Vermeersch, Michael Louis, Supercritical working fluid circuit with a turbo pump and a start pump in series configuration.
  33. Held, Timothy James, System and method for managing thermal issues in gas turbine engines.
  34. Held, Timothy James, System and method for managing thermal issues in one or more industrial processes.
  35. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Thermal energy conversion device.
  36. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Thermal energy conversion method.
  37. Turner, Terry D.; Wilding, Bruce M.; McKellar, Michael G.; Shunn, Lee P., Vaporization chambers and associated methods.
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