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Microturbine combination systems 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F02B-033/44
출원번호 US-0008047 (2001-11-07)
발명자 / 주소
  • Rouse, Gregory C.
  • Treece, William
  • Willis, Jeff
출원인 / 주소
  • Capstone Turbine Corporation
대리인 / 주소
    Waddey & Patterson
인용정보 피인용 횟수 : 46  인용 특허 : 7

초록

According to the present disclosure, a turbogenerator system may be combined with other heat/energy sources. A simple cycle or recuperated cycle turbogenerator have a variety of fuel options and grid connect or stand alone capability that can be combined with one or more external heat sources such a

대표청구항

1. A turbogenerator comprising: a turbogenerator having an integral first heat source for driving the turbogenerator; a one or more external heat sources for driving the turbogenerator; a controller for controlling the proportion of heat from the first heat source and the one or more external h

이 특허에 인용된 특허 (7)

  1. Yannone ; Robert A. ; Reuther ; John F., Black start system for large steam powered electric generation plants.
  2. Kemmer Leif (Lotorp SEX) Mukherjee Dilip (Fislisbach CHX) Tjellander Gran (Finspong SEX), Method and device for temperature control in a combustion plant.
  3. George Brian Victor (Willoughby Waterleys EN) Drayrer Colin James (Oxon Way EN), Nuclear power installations.
  4. Chen Allen G. (Turkey Lake FL) Scott Robert K. (Casselberry FL) Cloyd Scott T. (Lake Mary FL), Steam cooling of gas turbine with backup air cooling.
  5. Martin, Harry F., Steam turbine gland seal control system.
  6. Putman Richard E. (Penn Hills Twp. ; Allegheny County PA) Gundersen Katherine A. (Chicago IL), System for economic unit load distribution during process load transition.
  7. Beatty ; John M. ; Frater ; Robert L., System for multi-mode control of a boiler feedpump turbine.

이 특허를 인용한 특허 (46)

  1. Kesseli, James B.; Nash, James S., Ceramic-to-metal turbine shaft attachment.
  2. Baldwin, Matthew Stephen, Ceramic-to-metal turbine volute attachment for a gas turbine engine.
  3. Hamrin, Douglas; Lampe, Steve, Controls for multi-combustor turbine.
  4. Yamamoto, Akihiro; Hoshi, Yasuhiko; Hamasaki, Hiroyuki, Data processing system with selectable interrupt control.
  5. Donnelly, Frank Wegner; Dewis, David William, Dispatchable power from a renewable energy facility.
  6. Gehret, Jr.,Joseph B., Engine driven power inverter system with cogeneration.
  7. Wang, Ivan; Ethier, Jason; Shen, Hardy, Fluid flow devices with vertically simple geometry and methods of making the same.
  8. Prabhu, Edan, Fuel oxidation in a gas turbine system.
  9. Dewis, David William; Kesseli, James; Donnelly, Frank Wegner; Wolf, Thomas; Upton, Timothy; Watson, John D., Gas turbine energy storage and conversion system.
  10. Dewis, David William; Kesseli, James; Donnelly, Frank Wegner; Wolf, Thomas; Watson, John D., Gas turbine energy storage and conversion system.
  11. Donnelly, Frank Wegner; Dewis, David William, Gas turbine engine configurations.
  12. Prabhu, Edan D., Gasifier power plant and management of wastes.
  13. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  14. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  15. Denison, Thomas Renau; Maslov, Boris A., Gradual oxidation and multiple flow paths.
  16. Maslov, Boris A., Gradual oxidation and multiple flow paths.
  17. Armstrong, Jeffrey, Gradual oxidation below flameout temperature.
  18. Maslov, Boris A., Gradual oxidation below flameout temperature.
  19. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with adiabatic temperature above flameout temperature.
  20. Maslov, Boris A., Gradual oxidation with adiabatic temperature above flameout temperature.
  21. Maslov, Boris A.; Armstrong, Jeffrey, Gradual oxidation with flue gas.
  22. Hamrin, Douglas; Armstrong, Jeffrey, Gradual oxidation with heat control.
  23. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  24. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  25. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  26. Maslov, Boris A.; Hamrin, Douglas, Gradual oxidation with heat exchange media.
  27. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with heat transfer.
  28. Armstrong, Jeffrey; Maslov, Boris A., Gradual oxidation with heat transfer.
  29. Hamrin, Douglas; Martin, Richard; Armstrong, Jeffrey, Gradual oxidation with heat transfer.
  30. Schnepel, Mark, Gradual oxidation with reciprocating engine.
  31. Schnepel, Mark; Maslov, Boris A., Gradual oxidation with reciprocating engine.
  32. Prabhu, Edan, Heating a reaction chamber.
  33. Martin, Richard; Armstrong, Jeffrey; Hamrin, Douglas, Hybrid gradual oxidation.
  34. Prabhu, Edan, Managing leaks in a gas turbine system.
  35. Kesseli, James B.; Baldwin, Matthew Stephen, Metallic ceramic spool for a gas turbine engine.
  36. Smeets, Paulus Maria; Shakariyants, Savad, Method for manufacturing micro gas turbine.
  37. Perry, Matthew V.; Farina, Jordan T.; LePera, Stephen D.; Ferrar, Anthony M.; O'Brien, Walter F.; Shiver, Samuel, Micro gas turbine engine for powering a generator.
  38. Ethier, Jason How-Ring; Wang, Ivan; Herold, Erik; Hatch, Alyssa M., Micro gas turbine systems and uses thereof.
  39. Hamrin, Douglas; Lampe, Steve, Multi-combustor turbine.
  40. Prabhu, Edan, Oxidizing fuel.
  41. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  42. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  43. Prabhu, Edan D., Processing fuel and water.
  44. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Staged gradual oxidation.
  45. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas; Perry, Joe, Staged gradual oxidation.
  46. Martin,Steven P.; Meade,Christopher O.; Shahed,Syed M., Turbocharger containment shield.
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