$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Fuel cell fuel control system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/04
  • H01M-008/06
출원번호 US-0754181 (1976-12-27)
발명자 / 주소
  • Fanciullo
  • Salvatore
출원인 / 주소
  • United Technologies Corporation
인용정보 피인용 횟수 : 112  인용 특허 : 0

초록

A fuel cell fuel control system is presented in which the fuel processor is isolated from the fuel cell by means of a demand valve. The fuel processor operates at an elevated pressure and forms a reservoir of hydrogen which is supplied to the fuel cell upon demand based on the pressure downstream of

대표청구항

대표청구항이 없습니다.

이 특허를 인용한 특허 (112)

  1. Yang, Jefferson YS, Anode stream recirculation system for a fuel cell.
  2. Edlund,David J., Auxiliary fuel cell system.
  3. Scharf, Mesa, Consumption-based fuel cell monitoring and control.
  4. Galloway James H. (New Baltimore MI), Device for controlling a pump in a storage battery.
  5. Edlund,David J.; Studebaker,R. Todd, Feedstock delivery systems, fuel processing systems, and hydrogen generation assemblies including the same.
  6. Salvador, John P.; Dandalides, James W.; Pettit, William Henry, Fuel cell having dynamically regulated backpressure.
  7. Franklin Delano Lomax ; Mujeeb Ismael Ijaz, Fuel cell power generation system and method for powering an electric vehicle.
  8. Takabayashi Yasuhiro (Kanagawa JPX), Fuel cell power supply.
  9. Davis, Edward Lee; Schafer, Benjamin Franklin, Fuel cell stack with a plurality of connected single unit fuel cells.
  10. Baird, Bret C.; Stolasz, Jeffrey P.; Wright, Christopher J., Fuel cell stacks and systems with fluid-responsive temperature regulation.
  11. Baird, Bret C.; Stolasz, Jeffrey P.; Wright, Christopher J., Fuel cell stacks and systems with fluid-responsive temperature regulation.
  12. Kai, Mitsuru; Kurosaki, Kouji, Fuel cell system.
  13. Ju, Din-Sun; Chou, Po-Kuei; Cheng, Tsai-Hsin, Fuel cell system and method for controlling the same.
  14. Ju, Din-Sun; Chou, Po-Kuei; Cheng, Tsai-Hsin, Fuel cell system and method for controlling the same.
  15. Belschner, Werner; Blum, Joachim; Kaufmann, Lars, Fuel cell system and method for operating a fuel cell.
  16. Autenrieth, Rainer; Konrad, Gerhard; Ledwig, Karsten; Niehues, Michael; Walter, Markus, Fuel cell system and method for operating the fuel cell system.
  17. David J. Edlund ; Thomas G. Herron ; Craig F. Holmes, Fuel cell system controller.
  18. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Fuel cell system controller.
  19. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Fuel cell system controller.
  20. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Fuel cell system controller.
  21. Dickman, Anthony J.; Edlund, David J., Fuel cell system with load management.
  22. Dickman,Anthony J.; Edlund,David J., Fuel cell system with load management.
  23. Givens, James A.; LaVen, Arne, Fuel cell systems and methods for providing power and cooling to an energy-consuming device.
  24. Kelley, Mason P.; LaVen, Arne; Snider, Tod L., Fuel cell systems with maintenance hydration by displacement of primary power.
  25. Kelley, Mason P.; Laven, Arne; Snider, Tod L., Fuel cell systems with maintenance hydration by displacement of primary power.
  26. Edlund, David J.; Pledger, William A., Fuel processing system.
  27. Edlund,David J., Fuel processing system and improved feedstock therefor.
  28. Chen, Zhen; Karim Kamel Ibrahim, John; Ouyang, Xun; Renn, Curtiss; Sturko, Ryan Thomas, Fuel processing systems with thermally integrated componentry.
  29. Edlund, David J., Fuel processing systems, fuel cell systems, and improved feedstocks therefor.
  30. Dickman, Anthony J.; Edlund, David J.; Pledger, William A., Fuel processor feedstock delivery system.
  31. Dickman, Anthony J.; Edlund, David J.; Pledger, William A., Fuel processor feedstock delivery system.
  32. Dickman,Anthony J.; Edlund,David J.; Pledger,William A., Fuel processor feedstock delivery system.
  33. Maston Valerie A. ; VanDine Leslie L. ; Sederquist Richard A. ; Smith Raymond M. ; Grubb Paul A. ; Malinowski Theodore S., Gas generating system and method.
  34. David J. Edlund ; Charles R. Hill ; William A. Pledger ; R. Todd Studebaker, Hydrogen purification devices, components and fuel processing systems containing the same.
  35. Edlund, David J.; Hill, Charles R.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification devices, components and fuel processing systems containing the same.
  36. Edlund, David J.; Hill, Charles R.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification devices, components and fuel processing systems containing the same.
  37. Edlund, David J.; Hill, Charles R.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification devices, components and fuel processing systems containing the same.
  38. Edlund,David J.; Frost,Chester B.; Studebaker,R. Todd, Hydrogen purification devices, components, and fuel processing systems containing the same.
  39. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  40. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  41. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  42. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  43. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  44. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  45. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  46. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  47. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  48. Edlund, David J.; Pledger, William A.; Studebaker, R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  49. Edlund,David J.; Pledger,William A.; Studebaker,R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  50. Edlund,David J.; Pledger,William A.; Studebaker,R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  51. Edlund,David J.; Pledger,William A.; Studebaker,R. Todd, Hydrogen purification membranes, components and fuel processing systems containing the same.
  52. Pledger, William A.; Popham, Vernon Wade; Studebaker, R. Todd; Taylor, Kyle, Hydrogen-processing assemblies and hydrogen-producing systems and fuel cell systems including the same.
  53. Pledger, William A.; Popham, Vernon Wade; Studebaker, R. Todd; Taylor, Kyle, Hydrogen-processing assemblies and hydrogen-producing systems and fuel cell systems including the same.
  54. Popham, Vernon Wade; Sorensen, Robert A.; Taylor, Kyle, Hydrogen-producing assemblies.
  55. LaVen, Arne, Hydrogen-producing fuel cell systems with load-responsive feedstock delivery systems.
  56. Edlund, David J., Hydrogen-producing fuel processing assemblies, heating assemblies, and methods of operating the same.
  57. Edlund, David J., Hydrogen-producing fuel processing assemblies, heating assemblies, and methods of operating the same.
  58. Beliveau, Clint A.; Elliot, Scott C.; Popham, Vernon Wade, Hydrogen-producing fuel processing systems and fuel cell systems with a liquid leak detection system.
  59. Beliveau, Clint A.; Elliot, Scott C.; Popham, Vernon Wade, Hydrogen-producing fuel processing systems with a liquid leak detection system.
  60. David J. Edlund ; William A. Pledger, Integrated fuel cell system.
  61. Edlund, David J.; Pledger, William A., Integrated fuel cell system.
  62. Edlund,David J.; Pledger,William A., Integrated fuel cell system.
  63. Renn, Curtiss, Methanol steam reforming catalysts, steam reformers, and fuel cell systems incorporating the same.
  64. Renn,Curtiss, Methanol steam reforming catalysts, steam reformers, and fuel cell systems incorporating the same.
  65. Davis,Edward Lee; Schafer,Benjamin Franklin, Method for making a single unit fuel cell.
  66. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Methods for operating a fuel cell system under reduced load conditions.
  67. Ohyauchi Hideo (Ibaraki JPX) Amano Yoshiaki (Ibaraki JPX) Yokoyama Eiji (Kashiwa JPX), Power generator containing fuel cell.
  68. Carter Dennis L. ; Gregg Dane W., Pressure equalized fuel cell stack.
  69. Sasaki Akira (Amagasaki JPX), Reformer reaction control apparatus for a fuel cell.
  70. Adams, Patton M.; Edlund, David J.; Popham, Vernon Wade; Scharf, Mesa; Studebaker, R. Todd, Self-regulating feedstock delivery systems and hydrogen-generating fuel processing assemblies and fuel cell systems incorporating the same.
  71. Edlund, David J.; Studebaker, R. Todd, Self-regulating feedstock delivery systems and hydrogen-generating fuel processing assemblies and fuel cell systems incorporating the same.
  72. LaVen, Arne; Scharf, Mesa, Shared variable-based fuel cell system control.
  73. Edlund, David J.; Elliott, Darrell J.; Hayes, Alan E.; Pledger, William A.; Renn, Curtiss; Stephens, Redwood; Studebaker, R. Todd, Steam reforming fuel processor, burner assembly, and methods of operating the same.
  74. Edlund, David J.; Elliott, Darrell J.; Hayes, Alan E.; Pledger, William A.; Renn, Curtiss; Stephens, Redwood; Studebaker, R. Todd, Steam reforming fuel processor, burner assembly, and methods of operating the same.
  75. Edlund, David J.; Elliott, Darrell J.; Hayes, Alan E.; Pledger, William A.; Renn, Curtiss; Stephens, Redwood; Studebaker, R. Todd, Steam reforming fuel processor, burner assembly, and methods of operating the same.
  76. David J. Edlund ; Thomas G. Herron, Steam reforming method and apparatus incorporating a hydrocarbon feedstock.
  77. Edlund,David J.; Herron,Thomas G., Steam reforming method and apparatus incorporating a hydrocarbon feedstock.
  78. Keskula, Donald H.; Clingerman, Bruce J.; Burch, Steven D.; Yu, Paul T., System and method for controlling steam in a fuel system with a fuel processor.
  79. David J. Edlund ; Thomas G. Herron ; William A. Pledger, System and method for controlling the operation of a fuel processing system.
  80. Edlund, David J.; Herron, Thomas G.; Pledger, William A., System and method for controlling the operation of a fuel processing system.
  81. Edlund, David J.; Herron, Thomas G.; Pledger, William A., System and method for controlling the operation of a fuel processing system.
  82. Edlund,David J.; Herron,Thomas G.; Pledger,William A., System and method for controlling the operation of a fuel processing system.
  83. David J. Edlund ; William A. Pledger, System and method for early detection of contaminants in a fuel processing system.
  84. Edlund, David J.; Pledger, William A., System and method for early detection of contaminants in a fuel processing system.
  85. Edlund,David J.; Pledger,William A., System and method for early detection of contaminants in a fuel processing system.
  86. Edlund,David J.; Pledger,William A., System and method for early detection of contaminants in a fuel processing system.
  87. Herron Thomas G., System and method for optimizing fuel cell purge cycles.
  88. Herron, Thomas G., System and method for optimizing fuel cell purge cycles.
  89. Herron, Thomas G., System and method for optimizing fuel cell purge cycles.
  90. Herron, Thomas G., System and method for optimizing fuel cell purge cycles.
  91. Anthony J. Dickman ; David J. Edlund ; William A. Pledger, System and method for recovering thermal energy from a fuel processing system.
  92. Dickman, Anthony J.; Edlund, David J.; Pledger, William A., System and method for recovering thermal energy from a fuel processing system.
  93. Dickman,Anthony J.; Edlund,David J.; Pledger,William A., System and method for recovering thermal energy from a fuel processing system.
  94. Chen, Zhen; Ouyang, Xun, Systems and methods for actively controlling steam-to-carbon ratio in hydrogen-producing fuel processing systems.
  95. LaVen, Sudha Rani; Rouveyre, Luc, Systems and methods for fuel cell thermal management.
  96. Edmiston, Thane Rea; Greenough, Benjamin Charles, Systems and methods for independently controlling the operation of fuel cell stacks and fuel cell systems incorporating the same.
  97. Adams, Patton M.; Givens, James A.; LaVen, Arne; LaVen, Sudha Rani; Renn, Curtiss, Systems and methods for initiating operation of pressure swing adsorption systems and hydrogen-producing fuel processing systems incorporating the same.
  98. Pledger, William A., Systems and methods for maintaining hydrogen-selective membranes during periods of inactivity.
  99. Skinkle, David W., Systems and methods for regulating fuel cell air flow during low loads or cold temperature operation.
  100. Popham, Vernon Wade, Systems and methods for reliable feedstock delivery at variable delivery rates.
  101. Popham, Vernon Wade, Systems and methods for reliable feedstock delivery at variable delivery rates.
  102. Desrosiers, Kevin C.; LaVen, Arne; Skinkle, David W., Systems and methods for starting and operating fuel cell systems in subfreezing temperatures.
  103. Desrosiers, Kevin C.; Laven, Arne; Skinkle, David W., Systems and methods for starting and operating fuel cell systems in subfreezing temperatures.
  104. Greenough, Benjamin Charles, Systems and methods for starting up pressure swing adsorption assemblies and hydrogen-producing fuel processing systems including the same.
  105. Adams, Patton M.; Bizjak, Travis A.; Givens, James A., Systems and methods for supplying auxiliary fuel streams during intermittent byproduct discharge from pressure swing adsorption assemblies.
  106. Adams, Patton M.; Bizjak, Travis A.; Givens, James A., Systems and methods for supplying auxiliary fuel streams during intermittent byproduct discharge from pressure swing adsorption assemblies.
  107. Edlund, David J, Thermally primed hydrogen-producing fuel cell system.
  108. Edlund, David J., Thermally primed hydrogen-producing fuel cell system.
  109. Edlund, David J., Thermally primed hydrogen-producing fuel cell system.
  110. Edlund, David J.; LaVen, Arne; Scharf, Mesa, Utilization-based fuel cell monitoring and control.
  111. Edlund, David J.; LaVen, Arne; Scharf, Mesa, Utilization-based fuel cell monitoring and control.
  112. Edlund,David J.; Herron,Thomas G., Volatile feedstock delivery system and fuel processing system incorporating the same.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로