Fresnel lens solar concentrator design and spectral distribution on focus surface

2011 ◽  
Vol 18 (5) ◽  
pp. 398-402 ◽  
Author(s):  
Zuo Chun Shen ◽  
Yu Lu ◽  
Jian Ye Lu
Author(s):  
Hassan Qandil ◽  
Weihuan Zhao

A novel non-imaging Fresnel-lens-based solar concentrator-receiver system has been investigated to achieve high-efficiency photon and heat outputs with minimized effect of chromatic aberrations. Two types of non-imaging Fresnel lenses, a spot-flat lens and a dome-shaped lens, are designed through a statistical algorithm incorporated in MATLAB. The algorithm optimizes the lens design via a statistical ray-tracing methodology of the incident light, considering the chromatic aberration of solar spectrum, the lens-receiver spacing and aperture sizes, and the optimum number of prism grooves. An equal-groove-width of the Poly-methyl-methacrylate (PMMA) prisms is adopted in the model. The main target is to maximize ray intensity on the receiver’s aperture, and therefore, achieve the highest possible heat flux and output concentration temperature. The algorithm outputs prism and system geometries of the Fresnel-lens concentrator. The lenses coupled with solar receivers are simulated by COMSOL Multiphysics. It combines both optical and thermal analyses for the lens and receiver to study the optimum lens structure for high solar flux output. The optimized solar concentrator-receiver system can be applied to various devices which require high temperature inputs, such as concentrated photovoltaics (CPV), high-temperature stirling engine, etc.


Solar Energy ◽  
2020 ◽  
Vol 207 ◽  
pp. 22-31
Author(s):  
Xinglong Ma ◽  
Rihui Jin ◽  
Shen Liang ◽  
Shuli Liu ◽  
Hongfei Zheng

2020 ◽  
Vol 59 (18) ◽  
pp. 5358 ◽  
Author(s):  
Mayank Gupta ◽  
Atul Kumar Dubey ◽  
Virendra Kumar ◽  
Dalip Singh Mehta

2007 ◽  
Author(s):  
Xuechang Ren ◽  
Shou Liu ◽  
Xiangsu Zhang ◽  
Xiaoyun Chen

2021 ◽  
pp. 3400-3406
Author(s):  
Ali Hussien Obaid ◽  
Emad Jaleel Mahdi ◽  
Assma Hassan Muslem ◽  
Ammar Noori Jafer ◽  
Salah Subhi Abed ◽  
...  

     In this paper, the performance of a silicon cell with a Fresnel lens (FL) for building a solar photovoltaic concentrator system was evaluated; the solar concentrator is a Fresnel lens, which is a point concentrator made of  polymethyl-methacrylate (PMMA) as a thin lens for the optics system. As the radiation from the sun on the solar cell is concentrated to the levels of solar radiation  of 750, 1300, 1930, 2600, 4250, 7250, and 10500) W/m2, the work was conducted at the midday in summer weather conditions, with ambient temperatures ranging 40-45 °C. The evaluation was performed in three cases; each case was conducted in succession. The performance of the cell was evaluated first without a cooling system, and then it was evaluated using the heat-sink (phenolic (pcb) printed circuit boards type). Finally, the fan with the heat-sink was used as a cooling system, which was more effective in dissipating the heat generated in the solar cell. The evaluation,  based on the current and voltage (I-V) results with cell temperature, showed the following efficiency values for the abovementioned  three cases, respectively:(6.91 ,7.76 ,6.65 ,7.77 ,6.27 ,4.74 ,3.37 ) %, (7.41 , 9.21 , 7.5 , 8.31 , 9.71 ,7.53 ,4.72 ) %, and (7.63 ,9.34 , 7.57, 8.37 , 10.2 ,7.75, 4.7) %.


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