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塔式太阳能热力发电技术进展 被引量:20

Technology Progress in Solar Power Tower
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摘要 开发和利用太阳能是当今世界新能源技术革命所面临的重大课题,尤其是太阳能热力发电对人类环境的改善和电力行业可持续发展具有重要的战略意义,必将成为本世纪一种重要能源产业。为此,在比较3种太阳能热力发电系统性能的基础上,阐述了塔式太阳能热力发电系统的发展历程和特点,介绍了塔式热力发电的基本原理及其示范电站的技术进展,着重分析了塔式热力发电所涉及的关键技术,包括太阳热能定日镜、受热器和高温热能储存技术。通过对关键技术的分析,指出大规模高温热能储存是实现太阳能热力发电需优先解决的关键技术,同时提出了发展中国塔式太阳能热力发电技术所需相关基础研究的建议。 Development and utilization of solar power is a momentous task to be faced by new energy technology innovation around the world. The solar power tower, particularly, is of strategic importance for environment improvement and continued development of electric power industry. These advantages are bound to make it a kind of the globally important energy industry in this century. On the basis of comparing 3-type solar thermal power generation systems, both the development history and the characteristics of solar power tower (SPT) are expounded. The basic principle of SPT and the technology progress in SPT power plant are also presented. As for the SPT generation, several key techniques are analyzed specially. They are solar heliostats, receiver and high-temperature thermal storage technology. Based on the analysis of the above key techniques, it is pointed out that large-scale high-temperature thermal storage technique should be given top priority in realizing solar thermal power generation. At the same time, some basic research contents and research direction are put forward for developing SPT system in China.
作者 廖葵 龙新峰
出处 《广东电力》 2007年第4期6-11,共6页 Guangdong Electric Power
基金 广东省自然科学基金项目(020875)
关键词 太阳能发电 热力发电 塔式发电系统 储能 定日镜 solar power generation thermal power generation solar power tower (SPT) system energy storage heliostats
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参考文献11

  • 1刘全根.国家能源结构调整的战略选择——加强可再生能源开发利用[J].地球科学进展,2000,15(2):154-164. 被引量:35
  • 2TSOUTSOS T, GEKAS V, MARKETAKI K. Technical and Economical Evaluation of Solar Thermal Power Generation [J]. Renewable Energy, 2003, 28(6) : 873- 886.
  • 3National Renewable Energy Laboratory. Survey of Thermal Storage for Parabolic Trough Power Plants[R]. Cologne: National Renewable Energy Laboratory, 2002.
  • 4TRIEB F. Competitive Solar Thermal Power Stations until 2010-the Challenge of Market Introduction [J]. Renewable Energy, 2000, 19(1/2): 163-171.
  • 5Sandia National Laboratories. 2000 " R&D 100" Awards Entry from[R]. Albuquerque: Sandia National Laboratories, 2000.
  • 6CASTRO M, PEIRE J, MARTINEZ P. Five-year CESA-1 Simulation Program Review[J]. Solar Energy, 1987, 38(6): 415 - 424.
  • 7曾山.几座塔式太阳热能发电站[J].国际电力,1997,1(4):25-27. 被引量:3
  • 8鹏飞.我国太阳能热发电技术的一座里程碑[J].太阳能,2006(3):59-60. 被引量:1
  • 9SANCHEZ M, ROMERO M. Methodology for Generation of Heliostat Field Layout in Central Receiver Systems Based on Yearly Normalized Energy Surfaces[J]. Solar Energy, 2006, 80(7) : 861 - 874.
  • 10Solar PACES. Concentrating Solar Power in 2001: An IEA/ Solar PACES Summary of Present Status and Future Prospects [R].Almeria: Solar PACES, 2001.

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