期刊文献+

基于小型发电机的碟式太阳能热力发电技术研究进展 被引量:1

Research Progress on Power Generation Technology of Disk Type Solar and Thermal Power Energy Based on Small Size Generator
下载PDF
导出
摘要 阐述了碟式太阳能热发电系统的发展历程和特点,介绍了碟式热发电的基本原理,着重分析了碟式热发电所涉及的关键技术,包括Stirling发电机、Brayton发电机、碟式聚光镜和受热器。通过对关键技术的分析,指出提高碟式聚光镜系统的稳定性和降低成本2个方面是当前技术开发的重点。同时提出了发展中国碟式太阳能热力发电技术开发过程的建议。 The paper elaborated the development course and characteristics of disk type solar and thermal power energy generation system, introduced the principle of disk type thermal power generation, and analyzed the crucial technologies about disk type thermal power generation including Stirling generator, Brayton generator and disk type condenser and heated ware.Through the analysis for crucial technology, it is pointed out that to improve stability of disk type condenser system and to reduce the cost is 2 aspects of focal point for the eta'rent technical development. At the same time, the suggestions about development course of disk type solar and thermal power energy generation technology in China are put forward.
作者 廖葵 龙新峰
出处 《电力设备》 2008年第1期35-38,共4页 Electrical Equipment
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 聚焦碟 受热器 清洁能源 太阳能 solar power energy generation thermal power generation focusing disk heated ware clean energy solar energy
  • 相关文献

参考文献10

  • 1[1]Marcelino Sánchez,Manuel Romero.Methodology for generation of heliostat field layout in central receiver systems based on yearly normalized energy surfaces[J].Solar Energy,2006,80:861 -874.
  • 2[2]Theocharis Tsoutsos,Vasilis Gekas,Katerina Marketaki.Technical and economical evaluation of solar thermal power generation[J].Renewable Energy,2003,28:873-886.
  • 3[3]Omar H.AL-Sakaf.Application possibilities of solar thermal power plants in Arab countries[J].Renewable Energy,1998,14(1 -4):1 -9.
  • 4王建华.新能源发电战略[J].能源研究与利用,1999(2):40-42. 被引量:5
  • 5[5]Maria Eugenia Corria,Vladimir Melian Cobas,Electo Silva Lora.Perspectives of Stifling engines use for distributed generation in Brazil[J].Energy Policy,2006,34 (18):3402-3408.
  • 6[6]STRUMPF H J,COOMBS M G,LACY D E.Advanced space solar dynamic receives[R].Ohio:Lewis Research Center,1988.
  • 7[7]Joyce S.Wanhainen,Timothy E.Tyburski,Joint US/Russian solar dynamic flight demonstration project plan.IECEC paper,No.AP-176,ASME 1995.1417 -420.
  • 8[8]Lowell D Massie.Future trend in space power technology[J].IEEE AES Systems Magazine,1991,18-13.
  • 9崔海亭,袁修干.太阳能热动力系统Brayton装置与Stirling装置分析与比较[J].河北科技大学学报,2004,25(1):38-41. 被引量:2
  • 10[10]Kribus A,Doron P,Rubin R J,etal A multistage solar receiver:the route to high temperature[J].Solar Energy,1999,67 (1-3):3-11.

二级参考文献16

  • 1田文华.空问太阳能动力装置吸热一储热器[R].北京:空问技术情报研究所,1992..
  • 2JOSE M,DAVIS J S. Solar Dynamic Power System on the International Space Station ERT. Ohio:Lewis Research Center, 1996.
  • 3DOERTE L, MICHAEL R. Hybrid Sodium Heat Pipe Receivers for Dish/stirling Systems[R]. Ohio: Lewis Research Center, 1989.
  • 4FRIEFELD J M,WALLIN W E. Advanced Solar Dynamic Power Systems for Future Space Missions[R]. Ohio:Lewis Research Center,1989.
  • 5CARSIE A H,THOMAS W K. Transient Thermal State-of -charge in Solar Heat Receivers[R]. Arizona~AlliedSignal Aerospace, 1999.
  • 6WU Y C,ROSCHKE E J, BIRUR G C. Solar Dynamic Heat Receiver Thermal Characteristics in Low Earth Orbit[R]. Arizona: AlliedSignal Aerospace, 1988.
  • 7ANDRAKA C E,RAWLINSON K, MOSS T A. Solar Heat Pipe Testing of the Stiring Thermal Motors 4-120 Stirling Engine[R]. Ohio:Lewis Research Center, 1996.
  • 8KESSELI J B,ASSOCIATES S,LACY D E. The Cavity Heat Stirling Receiver for Space Solar Dynamies[R]. Ohio:Lewis Research Center,1989.
  • 9LINDA J B,EDWARD P B,ROBERT D C,et al. Solar Dynamic Power System Development for Space Station Freedom[R]. Ohio:Lewis Research Center, 1993.
  • 10BARAONA C R. Photovoltaic Power for Space Station Freedom[R]. Ohio: Lewis Research Center, 1989.

共引文献4

同被引文献11

  • 1张红,许辉,白植,等.高温太阳能热管接收器:中国,2007101911-45.4[P].2008-05-14.
  • 2WASHOM B.Parabolic dish stirling module development and test results[A].Proceedings of the 19th Intersociety Energy Conversion Engineering Conference [C].San Franeiseo, CA, 1984.
  • 3PRABAL TALUKDAR,SUBHASH,MISHRA,et al. Combined radiation and convection heat transfer in a porous channel bounded by isothermal parallel plates[J]. International Journal of Heat and Mass Transfer, 2004,47(5):1001-1013.
  • 4康剑南,杨果,帅永,等.典型太阳能吸热器热性能研究[C].广州:中国工程热物理学会第十六届年会,2010.
  • 5K S REDDY,N SENDHIL KUMAR. Combined laminar natural convection and surface radiation heat transfer in a modified cavity receiver of solar parabolicdish [J]. International Journal of Thermal Sciences, 2008,47 (12) : 1647-1657.
  • 6N SENDHIL KUMASR,K S REDDY. Comparison of receivers for solar dish collectorsystem [J]. Energy Conversionand Management, 2008,49 (4) : 812-819.
  • 7ADKINS D R,ANDRAKA C E,MORENO J B,et al. Heat pipe solar receiver development activities at Sandia National Laboratories [A].Proceedings of the Renewable and Advanced Energy Conference [C]. Maui, HA, 1999.
  • 8A MEZRHAB,H BOUALI,H AMAOUI,et al. Computation of combined natural-convection and radiation heat-transfer in a cavity having a square body at its center[J].AppUed Energy, 2006,83:1004-1023.
  • 9AHMED MEZRHAB,MOHAMMED JAMI,M HAMED BOUZIDI, et al.Analysis of radiation-natural convection in a divided enclosure using the latticeBoltzmann method [J]. Computers & Fluids, 2007,36: 423-434.
  • 10LAING D, GOEBEL O. Second generation sodium heat pipe solar receiver for a USAB V-160 stirling engine: evaluation ofonsun test results using the proposed IEA guidelines and analysis of heat pipe damage [J].Journal of Solar Energy Engineering, 1997,119 ( 11 ) : 279 - 284.

引证文献1

二级引证文献5

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