期刊文献+

高温燃料电池/燃气轮机混合循环发电技术 被引量:7

The high temperature fuel cell/gas turbine hybrid power generation technology
下载PDF
导出
摘要 高温燃料电池/燃气轮机混合循环系统以其效率高、排放低的特点,在未来分布式发电和集中式大规模发电中占有重要地位。本文首先简介了高温燃料电池和先进燃气轮机的结构特点及其分类,在此基础上阐述了高温燃料电池与先进燃气轮机混合系统的基本模式,然后对适用于分布式发电和集中式发电的几种典型混合循环系统的结构和相应的流程及特点进行了详细的描述,最后给出了高温燃料电池和燃气轮机混合循环发电系统中的一些主要代表性技术以及目前研究的进展、挑战和目标。 High temperature fuel cell/gas turbine hybrid system is one of the most promising systems for its high efficiency and low emission in the future distributed power generation and central power generation systems. Structural Configurations and classifications of the high temperature fuel cells and advanced gas turbines technologies are introduced in this paper. Basic hybrid cycle modes of high temperature fuel cell/gas turbine are described. Then, cycle constitutions,flowchart and corresponding characteristics of several typical cycle modes for distributed power generation and central power generation are illustrated. Finally, main representative technologies and current research activities, challenges and goals in the hybrid system are summarized.
出处 《燃气轮机技术》 2005年第1期23-29,共7页 Gas Turbine Technology
关键词 高温燃料电池 燃气轮机 混合循环 high teperature fuel cell gas turbine hybrid system
  • 相关文献

参考文献19

  • 1丰镇平 邓清华.燃料电池及燃料电池-燃气轮机联合循环发电技术进展.燃气轮机发电技术,2001,3(3):14-24.
  • 2张会生,苏明,翁史烈.微型燃气轮机在燃料电池-燃气轮机混合装置中的应用[J].热力透平,2003(1):17-19. 被引量:3
  • 3Williams G J, Siddle A, Pointon K. Design optimization of a hybrid solid oxide fuel cell & gas turbine power generation system [R]. ALSTOM Power Technology Center Report. 2001.
  • 4Veyo S, Litzinger Vora K, Vora S, et al. Status of pressurized SOFC/Gas turbine power system develipment at Siemens Westinghouse [J]. ASME GT-2002-30671,2002.
  • 5Samuelsen S. Fuel cell/Gas turbine hybrid systems[J]. ASME International gas tubine institute,2004.
  • 6西门子公司的燃料电池系统示范工程[J].中国电力,2001,34(9):61-62. 被引量:5
  • 7Rao A, Samuelsen G S. A Thermodynamic analysis of tubular SOFC based hybrid systems[J]. ASME GT-2001-0522,2001.
  • 8Layne A, Williams M, Hilcombe N, Samuel sen S. Hybrid fuel cell heat engines: recent efforts[ J]. ASME GT-2001-0588,2001.
  • 9Lundberg W, Veyo S, Moeclel M K. A high-efficiency SOFC hybrid power system using the mercury 50 ATS gas turbine[J] .ASME GT-2001-0521,2001.
  • 10Dennis R, Willianms M,Layne A,et al.The National Energy Technology Laboratory's Hybrid power systems program [ J ]. ASME GT-2002-30670,2002.

二级参考文献10

  • 1翁史烈.天然气-燃气轮机-燃料电池[J].天然气技术研讨会,2001,24(2):103-107.
  • 2Sy A. Ali, Robert R. Moritz. A Turbo-Generator for Fuel Cell/Gas Turbine Hybrid Power Plant [ C ]. ASME Turbo Expo. 2001, 2001-GT-0524.
  • 3Aristide F. Massardo, Colin F. McDonald, Theodosios Korakianitis. Microturbine/Fuel Cell Coupling for High-Efficiency Electrical-Power Generation [ C ]. ASME Turbo Expo.2000,2000-GT-175.
  • 4Abbie Layne, Scott Samuelsen, Mark Williams, Patricia Hoffman. Hybrid Heat Engines : The Power Generation Systems of the Future [ C ]. ASME Turbo Expo. 2000, 2000-GT-0549.
  • 5Hiroo Yasue, Hisashi Kato, Kazuhiko Takasu. Development of a 1000 kW-Class MCFC Plant in Japan [ J ]. Journal of Power Sources, 1998, 71:89-94.
  • 6Klaus Hassmann, Reinhard Rippel. A New Approach to Fuel Cell Investment Strategy [ J ]. Journal of Power Sources,1998, 71:75-79.
  • 7P. Costamagna, L. Magistri, A.F. Massardo. Design and Part-Load Performance of a Hybrid System Based on a Solid Oxide Fuel Cell Reactor and a Micro Gas Turbine [ J ]. Journal of Power Sources, 2001,96:352-368.
  • 8Anthony J. Leo, Hossein Ghezel-Ayagh, Robert Sanderson.Ultra High Efficiency Hybrid Direct Fuel Cell/Turbine Power Plant[C]. ASME Turbo Expo. 2000, 2000-GT-0552..
  • 9Piero Lunghi, Stefano Ubertini, Umberto Desideri. Highly Efficient Electricity Generation Through a Hybrid Molten Carbonate Fuel Cell-Closed Loop Gas Turbine Plant [ J ].Energy Conversion and Management, 2001,42 : 1657-1672.
  • 10张会生,刘永文,苏明,翁史烈.高温燃料电池—燃气轮机混合发电系统性能分析[J].热能动力工程,2002,17(2):118-121. 被引量:17

共引文献6

同被引文献88

引证文献7

二级引证文献17

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部