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Waste heat recovery system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F22D-001/00
출원번호 US-0197530 (1988-05-23)
발명자 / 주소
  • Smith Edward M. (Wyncote PA) Cornelison Richard C. (Hiram OH)
출원인 / 주소
  • W. R. Grace & Co.-Conn. (New York NY 02)
인용정보 피인용 횟수 : 35  인용 특허 : 9

초록

There is provided a waste heat recovery system characterized by a boiler assembly including a heat recovery steam generator through which exhaust gas is flowed. The boiler assembly includes a high temperature steam tube heat exchanger, or superheater, and at a location downstream therefrom a water t

대표청구항

A waste heat recovery system comprising in combination: (a) a conduit for conveying an exhaust gas stream; (b) a boiler assembly connected to said conduit including a heat recovery steam generator through which said exhaust gas is flowed, and characterized by a high temperature steam tube heat excha

이 특허에 인용된 특허 (9)

  1. Inaba Hideya (Osaka JP) Tatsumi Toshio (Osaka JP) Iwai Chihiro (Osaka JP), Boiler containing denitrator.
  2. Aguet Emile (Winterthur CH), Combined gas turbine and steam power plant.
  3. Haeflich Jack (West Hartford CT), Combined heat recovery and emission control system.
  4. Welty ; Jr. ; deceased Albert B. (late of Westfield NJ) Prescott ; executrix by Doris M. (Houston TX), Method of removing nitrogen oxides from gaseous mixtures.
  5. Cornelison Richard C. (Hiram OH) Retallick William B. (West Chester PA), Process for making metal substrate catalytic converter cores.
  6. Moreno Frederick E. (Los Altos CA) Hartman Creighton D. (San Francisco CA), Turbine exhaust fed low NOx staged combustor for TEOR power and steam generation with turbine exhaust bypa.
  7. Inui Taiji (Hitachi JPX) Sasaki Makoto (Morioka JPX), Waste heat recovery boiler.
  8. Yanai Eiji (Hitachi JPX) Kuribayashi Tetsuzo (Hitachi JPX), Waste heat recovery boiler.
  9. Sakai ; Akira ; Inui ; Taiji ; Yokoi ; Yasuaki, Waste heat recovery boiler apparatus.

이 특허를 인용한 특허 (35)

  1. Welch, David E.; Sathyanarayana, Dileep; Mondello, James C.; Kudlacik, Edward L., Apparatus for starting a steam turbine against rated pressure.
  2. Norton Peter, Electricity generator and heat source for vehicles.
  3. Bono, Robert; Malyala, Rajashekharam V.; Miller, Alec; Golden, Stephen J., Emission reduction method for use with a heat recovery steam generation system.
  4. Bronicki, Lucien Y., Gas turbine exhaust gas cooling system.
  5. Mastronarde Thomas P., Gas turbine heat recovery steam generator and method of operation.
  6. Nakamura,Hitoshi; Kobayashi,Norihisa; Iida,Kozo; Naito,Osamu; Obayashi,Yoshiaki, Gas turbine single plant modifying method, a catalyst re-using method and a re-produced catalyst.
  7. Fisher Uriyel (Haifa ILX) Sinai Joseph (Ramat Gan ILX) Gilon Yoel (Jerusalem ILX), Gas turbine system and method using temperature control of the exhaust gas entering the heat recovery cycle by mixing wi.
  8. Sattelmayer Thomas,DEX, Gas-turbine construction.
  9. Gu, Minghai; Sun, Songliang; Luo, Guangliang, HRSG for fluidized gasification.
  10. Horek, Jon; Wilson, Michael J.; Voss, Mark, Heat recovery system and method.
  11. Horek, Jon; Wilson, Michael J.; Voss, Mark, Heat recovery system and method.
  12. Bannister, John J; Barker, Geoffrey M; Henshaw, Iain; Whitechurch, Timothy; Bright, Neil S., Heating system—modular.
  13. Beer Janos M. (Winchester MA) Toqan Majed A. (Avon CT), Inverse combined steam-gas turbine cycle for the reduction of emissions of nitrogen oxides from combustion processes usi.
  14. Radovich,Michael J., Method and apparatus for combined cycle power plant operation.
  15. Kraemer, Gilbert O., Method and apparatus for operation of CO/VOC oxidation catalyst to reduce NO2 formation for gas turbine.
  16. Kienbock, Martin; Kehr, Manfred, Method and device for using excess heat not required for operating a desulfurization device.
  17. Br첩dreskift,Knut, Method for recovery of VOC gas and an apparatus for recovery of VOC gas.
  18. Feller, Gerald J.; Kortgoede, Alan K.; Miranda-Velazquez, Gilberto, Method of operating a gas turbine power plant with auxiliary power to reduce emissions.
  19. Strohmeyer ; Jr. Charles (Gladwyne PA), Organic waste fuel combustion system integrated with a gas turbine combined cycle.
  20. Easom Bruce H. ; Smolensky Leo A. ; Wysk S. Ronald, Power generating gasification cycle employing first and second heat exchangers.
  21. Davis, Jr., Lewis Berkley; Kraemer, Gilbert Otto; Kulkarni, Parag Prakash; Zhang, Hua, Power generation system exhaust cooling.
  22. Davis, Jr., Lewis Berkley; Kulkarni, Parag Prakash; Reed, Robert Joseph, Power generation system exhaust cooling.
  23. Davis, Jr., Lewis Berkley; Kulkarni, Parag Prakash; Reed, Robert Joseph, Power generation system exhaust cooling.
  24. Davis, Jr., Lewis Berkley; Kulkarni, Parag Prakash; Reed, Robert Joseph, Power generation system exhaust cooling.
  25. Davis, Jr., Lewis Berkley; Kulkarni, Parag Prakash; Reed, Robert Joseph, Power generation system exhaust cooling.
  26. Kulkarni, Parag Prakash; Davis, Jr., Lewis Berkley; Reed, Robert Joseph, Power generation system exhaust cooling.
  27. Kulkarni, Parag Prakash; Davis, Jr., Lewis Berkley; Reed, Robert Joseph, Power generation system exhaust cooling.
  28. Kulkarni, Parag Prakash; Davis, Jr., Lewis Berkley; Reed, Robert Joseph, Power generation system exhaust cooling.
  29. Kulkarni, Parag Prakash; Davis, Jr., Lewis Berkley; Reed, Robert Joseph, Power generation system exhaust cooling.
  30. Kulkarni, Parag Prakash; Davis, Jr., Lewis Berkley; Reed, Robert Joseph; Smith, Raub Warfield, Power generation system exhaust cooling.
  31. Reed, Robert Joseph; Davis, Jr., Lewis Berkley; Kulkarni, Parag Prakash, Power generation system exhaust cooling.
  32. Reed, Robert Joseph; Davis, Jr., Lewis Berkley; Kulkarni, Parag Prakash, Power generation system exhaust cooling.
  33. Erickson, Donald C, Steam ammonia power cycle.
  34. Durmaz, Ahmet; Lara, Marcelo Andres, System and method for converting heat energy into electrical energy through and organic rankine cycle (ORC) system.
  35. Bellows, James C.; Moulavi, Abol H., System and method for improving the heat rate of a turbine.

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