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[미국특허] Supplying heat to an externally fired power system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F01K-013/00
출원번호 US-0546419 (1995-10-20)
발명자 / 주소
  • Kalina Alexander I. (Hillsborough CA) Mirolli Mark D. (Hayward CA)
출원인 / 주소
  • Exergy, Inc. (Hayward CA 02)
인용정보 피인용 횟수 : 59  인용 특허 : 0

초록

Apparatus and method for supplying heat to an externally fired power system by using a multistage system having two or more combustion zones. Each combustion zone has an associated heat exchanger that conveys a respective working fluid stream from the externally fired power system. Each combustion z

대표청구항

A method for supplying heat to an externally fired power system that includes the steps of: supplying a first stream of air and a first portion of total amount of combustion fuel to a first combustion zone, combusting said first portion of fuel in said first combustion zone to form a first flue gas

이 특허를 인용한 특허 (59) 인용/피인용 타임라인 분석

  1. Hart, Katherine; Held, Timothy James, Automated mass management control.
  2. Hart, Katherine; Held, Timothy James, Automated mass management control.
  3. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Blowdown recovery system in a Kalina cycle power generation system.
  4. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao, Carbon dioxide refrigeration cycle.
  5. Terashima Tetsuo,JPX ; Taguchi Kiyoshi,JPX ; Kawasaki Yoshitaka,JPX ; Suzuki Motohiro,JPX ; Suzuki Jiro,JPX, Catalytic combustion system and combustion control method.
  6. Kalina Alexander I. ; Rhodes Lawrence B., Converting heat into useful energy using separate closed loops.
  7. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Distillation and condensation subsystem (DCSS) control in kalina cycle power generation system.
  8. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao, Driven starter pump and start sequence.
  9. Held, Timothy James; Vermeersch, Michael; Xie, Tao, Driven starter pump and start sequence.
  10. Kalina, Alexander I., Dual pressure geothermal system.
  11. Kalina, Alexander I., Dual pressure geothermal system.
  12. Peletz ; Jr. Lawrence J., Fluidized bed for kalina cycle power generation system.
  13. Kalina, Alexander I., Geothermal system.
  14. Kalina, Alexander I., Heat conversion system simultaneously utilizing two separate heat source stream and method for making and using same.
  15. Held, Timothy J.; Miller, Jason D., Heat engine and heat to electricity systems and methods for working fluid fill system.
  16. 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.
  17. 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.
  18. Held, Timothy James, Heat engine cycles for high ambient conditions.
  19. Kacludis, Alexander Steven; Hostler, Stephen R.; Zakem, Steve B., Heat engine system with a supercritical working fluid and processes thereof.
  20. Held, Timothy James, Heat engines with cascade cycles.
  21. Gurin, Michael H., Heat pump with integral solar collector.
  22. Held, Timothy James, Hot day cycle.
  23. Peletz ; Jr. Lawrence J., Hybrid dual cycle vapor generation.
  24. Gurin, Michael H., Hybrid power systems.
  25. Kalina, Alexander I., Low temperature geothermal system.
  26. Gabrielli Frank ; Gibbons Thomas B. ; Goodstine Stephen L. ; O'Neill James K., Material selection and conditioning to avoid brittleness caused by nitriding.
  27. Mirolli, Mark D.; Rhodes, Lawrence; Lerner, Yakov; Pelletier, Richard I., Method and apparatus for acquiring heat from multiple heat sources.
  28. Mirolli,Mark D.; Rhodes,Lawrence; Lerner,Yakov; Pelletier,Richard I., Method and apparatus for acquiring heat from multiple heat sources.
  29. Kalina, Alexander I., Method and apparatus for the utilization of waste heat from gaseous heat sources carrying substantial quantities of dust.
  30. Kalina Alexander I. ; Pelletier Richard I. ; Rhodes Lawrence B., Method and apparatus of converting heat to useful energy.
  31. Kalina, Alexander I., Method and system for converting waste heat from cement plant into a usable form of energy.
  32. Kalina Alexander I., Method and system of converting thermal energy into a useful form.
  33. Vermeersch, Michael Louis; Bowan, Brett A.; Khairnar, Swapnil, Methods for reducing wear on components of a heat engine system at startup.
  34. Videto, Brian D.; Bussjager, Ruddy C., Multistage gas furnace having split manifold.
  35. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao; Miller, Jason, Parallel cycle heat engines.
  36. Kalina, Alexander I., Power cycle and system for utilizing moderate and low temperature heat sources.
  37. Kalina, Alexander I., Power cycle and system for utilizing moderate and low temperature heat sources.
  38. Kalina, Alexander I., Power cycle and system for utilizing moderate and low temperature heat sources.
  39. Kalina,Alexander I., Process and apparatus for boiling and vaporizing multi-component fluids.
  40. Kalina,Alexander I., Process and system for the condensation of multi-component working fluids.
  41. Bowan, Brett A., Process for controlling a power turbine throttle valve during a supercritical carbon dioxide rankine cycle.
  42. Peletz ; Jr. Lawrence J. ; Tanca Michael C., Refurbishing conventional power plants for Kalina cycle operation.
  43. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Regenerative subsystem control in a kalina cycle power generation system.
  44. Xie, Tao; Vermeersch, Michael; Held, Timothy, Supercritical carbon dioxide power cycle for waste heat recovery.
  45. Vermeersch, Michael Louis, Supercritical working fluid circuit with a turbo pump and a start pump in series configuration.
  46. Held, Timothy James, System and method for managing thermal issues in gas turbine engines.
  47. Held, Timothy James, System and method for managing thermal issues in one or more industrial processes.
  48. Kalina, Alexander I., Systems and methods for low temperature heat sources with relatively high temperature cooling media.
  49. Kalina, Alexander I., Systems, methods and apparatuses for converting thermal energy into mechanical and electrical power.
  50. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathon S., Technique for balancing regenerative requirements due to pressure changes in a Kalina cycle power generation system.
  51. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Technique for controlling DCSS condensate levels in a Kalina cycle power generation system.
  52. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Technique for controlling regenerative system condensation level due to changing conditions in a Kalina cycle power generation system.
  53. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Technique for controlling superheated vapor requirements due to varying conditions in a Kalina cycle power generation system cross-reference to related applications.
  54. Gralton Gary ; Sun Chang-Yu ; Waryasz Richard E., Technique for cooling furnace walls in a multi-component working fluid power generation system.
  55. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,SEX ; Simon Jonathan S., Technique for maintaining proper vapor temperature at the super heater/reheater inlet in a Kalina cycle power generation system.
  56. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Thermal energy conversion device.
  57. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Thermal energy conversion method.
  58. Hansen Paul L. ; Kuczma Paul D. ; Palsson Jens O.,CHX ; Simon Jonathan S., Vapor temperature control in a kalina cycle power generation system.
  59. Fancher David H. ; Garcia Juan F. ; Goodstine Stephen L. ; Waryasz Richard E., Waste heat recovery technique.

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