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基于复合抛物面的新型三维光伏聚光器 被引量:2

A novel 3D compound paraboloid based photovoltaic concentrator
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摘要 为提高太阳能电池的输出功率,设计了一种基于复合抛物面的矩形出口三维聚光器。运用光迹追踪软件,对传统二维槽式聚光器及新型三维聚光器的工作性能进行了比较。仿真显示,当光线的入射角在聚光器接收范围内时,新型三维聚光器具有大于90%的聚光效率和较高的聚光比。将接收半角为35°的三维聚光器应用于多晶硅太阳能电池上,在太阳辐照度为400 W/m2的情况下,电池最大输出功率可达到非聚光的2.25倍。 In order to increase the output power of solar cells, a 3D photovohaic concentrator based on compound paraboloid is designed. Using ray-tracing software, the performances of the new designed 3D concentrator are compared with that of traditional 2D trough collector. The new concentrator's concentration efficiency is more than 90% and concentration ratio is really high when incident rays within acceptance angle of 3D concentrator. Then a concentrator prototype with a nominal half acceptance angle of 35 ° was made and mounted with a poly-silicon solar cell. Under a 400 W/m^2 solar radiation, the low cost poly-silicon solar cell achieved a 2.25 times maximum output power comparing with the same bare cell.
出处 《可再生能源》 CAS 北大核心 2013年第10期15-19,共5页 Renewable Energy Resources
基金 深圳市产业发展专项基金(JC201105170718A JC201005270284A)
关键词 太阳能 复合抛物面聚光器 太阳能电池 solar energy compound parabolic concentrator solar cell
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参考文献7

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同被引文献11

  • 1Nabin Sarmah,Tapas K Mallick.Design,fabrication and outdoor performance analysis of a low concentrating photovoltaic system[J].Solar Energy,2015,112:361-372.
  • 2Katie Shanks,S Senthilarasu,Tapas K Mallick.Optics for concentrating photovoltaics:Trends,limits and opportunities for materials and design[J].Renewable and Sustainable Energy Reviews,2016,60:394-407.
  • 3B Kim,JK Kim,CK Park,et al.Design and fabrication of concentrated photovoltaic optics with high numerical aperture using a curved catadioptric optical system[J].Journal of Mechanical Science and Technology,2016,30(3):1315-1322.
  • 4M Hangweirer,R Ller,H Schneider.Design and analysis of a novel concentrated photovoltaic-thermal receiver concept[J].Japanese Journal of Applied Physics,2015,54(8):1-8.
  • 5Jiafei Zhao,Jiaqi Wang,Bin Wang,et al.Solar radiation transfer and performance analysis for a low concentrating photovoltaic thermal system[J].Environmental Progress&Sustainable Energy,2015,31(1):263-270.
  • 6OZ Sharaf,MF Orhan.Concentrated photovoltaic thermal(CPVT)solar collector systems:Part II-implemented systems,performance assessment,and future directions[J].Renewable and Sustainable Energy Reviews,2015,50:1566-1633.
  • 7谢果,郑宏飞,王海江,陶滔.新型槽式太阳能聚光集热器的研究与试验[J].可再生能源,2010,28(6):1-5. 被引量:12
  • 8刘志强,吕园园,徐爱祥,王沨枫.新型多平面太阳能聚光器性能分析[J].热科学与技术,2012,11(4):289-294. 被引量:2
  • 9周希正,马春元,张立强,王鹏.固定条形镜面太阳能聚光器设计及性能试验[J].农业工程学报,2014,30(1):160-168. 被引量:8
  • 10陈紫光,陈超,凌浩恕,郑宏飞,管勇,张纪涛,李娜,孙保东,宫伦祥.日光温室专用多曲面槽式太阳能空气集热器热工性能试验研究[J].建筑科学,2014,30(8):58-63. 被引量:12

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