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高温空气发生器实验台的研制 被引量:4

DEVELOPMENT OF fflGH TEMPERATURE AIR GENERATOR TEST RIG
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摘要 指出了发展生物质高温空气气化系统的必要性,介绍了其关键技术-高温空气发生器的工作原理;对高温空气发生器关键部件的结构设计进行了详细阐述,建立了高温空气发生器实验台,并在此装置上进行了冷态实验。实验结果表明:高温空气发生器可以正常稳定运行,整体性能满足设计要求,并且获得了重要的性能参数,为掌握高温空气性能并深入研究生物质高温空气气化系统作好了充分的实验准备。 Development of HTAG system for biomass was summarized, the working principle of it's key technology-high temperature air generator was introduced; construction design of high temperature air generator's key components was elaborated in detail, high temperature air generator test rig was established, and cold-state experiment was carried out on this test rig, cold-state experiment's result indicated, high temperature air generator test rig can be in motion normally and steadily, test rig's performance can meet design's demand, and some important performance are got, good experiment prepare has been done for mastering high temperature air generator's performance and deeply studying HTAG system for biomass.
出处 《太阳能学报》 EI CAS CSCD 北大核心 2005年第3期391-395,共5页 Acta Energiae Solaris Sinica
基金 国家高技术研究发展计划专项经费资助(2001AA514013)
关键词 生物质 高温空气气化 冷态实验 Biomass Combustion chambers Gasification Heat exchangers
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参考文献5

  • 1Yoshikawa K. Gasification and power generation from solid fuels using high temperature air [ A ]. Proceeding of High Temperature Air Combustion Symposium [ C ], Beijing,Oct. 1999: 48-68.
  • 2Yoshikawa K.Present status and future plan of CREST MEET project [ A]. Proceeding of the 2nd International High Temperature Air Combustion Symposium [ C ], Taiwan, Jan. 1999: A1-1~A1-7.
  • 3Yoshikawa Kunio. R&D on small ~ scale gasification of solid fuels using high temperature air and stream [ A ].RAN2001 3rd International Symposium on Advanced Energy Conversion System and Related Technologies [ C ],Nagoya, Japan, December, 2001.
  • 4蒋绍坚,艾元方,彭好义,萧泽强,周孑民,汪洋洋,熊家政.高温低氧燃烧技术及其高效低污染特性分析[J].中南工业大学学报,2000,31(4):311-314. 被引量:17
  • 5蒋绍坚,曹小玲,艾元方,彭好义,汪洋洋,熊家政.生活垃圾高温空气气化处理的低污染特性分析[J].环境污染治理技术与设备,2001,2(5):91-94. 被引量:5

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