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Distribution of radiation flux in focal plane for a parabolic dish solar system

Distribution of radiation flux in focal plane for a parabolic dish solar system
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摘要 Radiation flux of focal plane plays a very important role of efficiency in a parabolic dish solar system.This paper aims to present the distribution of radiation flux in focal plane for every incident solar irradiation.Monte-Carlo ray-tracing method is applied and coupled with the measuring value of incident solar irradiation in Harbin City hourly.The results show that radiation flux in focal plane remains unchanged for different radius from 0 mm to 15 mm,and gradually decreases for different radius from 15 mm to 20 mm.And the results also show that the influence of incident solar irradiation on radiation flux in focal plane is very great,and the highest radiation flux is 21.8 W/mm2,when incident solar irradiation value is 1100 W/m2. Radiation flux of focal plane plays a very important role of efficiency in a parabolic dish solar system. This paper aims to present the distribution of radiation flux in focal plane for every incident solar irradiation. Monte-Carlo ray-tracing method is applied and coupled with the measuring value of incident solar irradiation in Harbin City hourly. The results show that radiation flux in focal plane remains unchanged for different radius from 0 mm to 15 mm, and gradually decreases for different radius from 15 mm to 20 mm. And the results also show that the influence of incident solar irradiation on radiation flux in focal plane is very great, and the highest radiation flux is 21.8 W/mm^2 . when incident solar irradiation value is 1100 W/m2.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2012年第2期5-8,共4页 哈尔滨工业大学学报(英文版)
基金 Sponsored by the China National Key Basic Research Special Funds (Grant No. 2009CB220006) the National Natural Science Foundation of China(Grant No.50930007)
关键词 monte-carlo RECEIVER focal plane radiation flux monte-carlo receiver focal plane radiation flux
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  • 1夏新林,谈和平,唐明,余其铮.空间光学系统中杂散辐射计算的蒙特卡洛方法验证[J].哈尔滨工业大学学报,1996,28(1):17-22. 被引量:10
  • 2帅永,张晓峰,谈和平.抛物面式太阳能聚能系统聚光特性模拟[J].工程热物理学报,2006,27(3):484-486. 被引量:22
  • 3魏秀东,卢振武,刘华.一种新型极轴跟踪式定日镜的研究[J].太阳能学报,2007,28(6):573-576. 被引量:13
  • 4Fletcher E A. Solarthermal Processing: A Review. Journal of Solar Energy Engineering, 2001, 123(2): 63-74
  • 5王志峰.碟式抛物线型太阳能聚焦集热器的热性能分析.在韩国能源研究院的报告,2001
  • 6Pasichny V V,Uryukov B A.Theoretical aspects for optimization of solar radiation concentrators with plane facets[J].Solar Energy,2002,73(4):293-301.
  • 7Buie D,Monger A G,Dey C J.Sunshape distribution for terrestrial solar simularions[J].Solar Energy,2003,74:113-122.
  • 8James A,William A.Focal plane flux distributions produced by solar concentrating reflectors[J].Solar Energy,1981,27(5):403-411.
  • 9Abdurakhmanov A.Calculation of the distribution of the density of solar radiant flux in the focal plane of a paraboloid concentrator[J].Applied Solar Energy,1994,30(4):60-67.
  • 10Moustafa M,Kadry A,Omar M.Measurements of solar flux density distribution on a plane receiver due to a flat heliostat[J].Solar Energy,1995,54(6):403-411.

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