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Application of Supercritical CO2 Gas Turbine for the Fossil Fired Thermal Plant 被引量:13

Application of Supercritical CO2 Gas Turbine for the Fossil Fired Thermal Plant
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出处 《Journal of Energy and Power Engineering》 2010年第9期7-15,共9页 能源与动力工程(美国大卫英文)
关键词 超临界二氧化碳 燃煤火电厂 燃气轮机 应用 化石 温度范围 循环利用 结构设计 Supercritical CO2 cycle, gas turbine, heat exchanger, thermal power plant, thermal efficiency, PCHE, CO2 heater
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参考文献13

  • 1E.G. Feher, The supercritical thermodynamic power cycle, IECEC, Miami Beach, Florida, Aug. 13-17, 1967.
  • 2G. Angelino, Carbon dioxide condensation cycles for power production, ASME Paper No.68-GT-23, 1968.
  • 3Y. Kato, T. Nitawaki, Y. Muto, Medium temperature carbon dioxide gas turbine reactor, Nuclear Engineering and Design 230 (2004)195-207.
  • 4V. Dostal, P. Hejzlar, M.J. Driscoll, High performance supercritical carbon dioxide cycles for next generation nuclear reactors, Nuclear Technology 154 (2006) 265-282.
  • 5A. Moisseytsev, J.J. Sienieki, Controllability of the supercritical carbon dioxide Brayton cycle near the critical point, in: ICAPP'08, Anaheim, CA USA, June 8-12, 2008.
  • 6S.A. Wright, P.S. Pickard, Supercritical CO2 test loop operation and first test results, in: Proceedings of ICAPP'09, Tokyo, Japan, May 10-14, 2009.
  • 7T. Ishizuka, Y. Muto, M. Aritomi, N. Tsuzuki, H. Kikura, Design and analysis of the axial bypass compressor blade of the supercritical CO2 gas turbine, Journal of Power and Energy Systems 4 (2010) 150-163.
  • 8M. Saez, D. Haubensack, N. Alpy, A. Gerber, F. David, The use of gas based energy conversion cycles for sodium fast reactors, in: Proceedings oflCAPP'08, Anaheim, CA USA, June 8-12, 2008.
  • 9Y. Muto, Y. Kato, Optimal cycle scheme of direct cycle supercritical CO2 gas turbine for nuclear power generation systems, Journal of Power and Energy Systems 2 (3) (2008) 1060-1073.
  • 10S. Ishiyama, Y. Muto, Y. Kato, S. Nishio, T. Hayashi, Y. Nomoto, Study of steam, helium and supercritical CO2 turbine power generations in prototype fusion power reactor, Progress in Nuclear Energy 50 (2008) 325-332.

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