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Development of Sea Shell concentrator profile using computer aided ray tracing technique and study of optical performance

机译:利用计算机辅助光线追踪技术开发海壳集中型材及光学性能研究

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A 2D Sea Shell concentrator with maximum half acceptance angle 36° and vertical solar swing + 36° to − 36° has been developed using computer aided ray tracing technique for bifacial solar cell and photothermal applications. Based on the analytical geometry of this profile, a Matlab program has been made to estimate the average number of reflected and direct ray on the particular zone of the absorber. By using the simulated result of this program, the effect of the variation of the angle of incidence on the total number of reflected rays, concentration ratio (CR), local concentration ratio distribution (LCR) of solar radiation on the flat horizontal absorber, average number of reflections (ANR) and efficiency of the concentrator have been determined within the limit of acceptance. From the simulated result it was observed that LCR distribution is more uniform from equinox to winter than of summer but optical concentration ratio at summer solstice has estimated maximum. In this paper we have also estimated that the maximum optical efficiency of Sea Shell concentrator is 85.5 % at winter solstice. From the study of the results of the comparison of LCR distributions over the absorber surface in various seasons, it is found more uniform than in summer.
机译:使用计算机辅助光线跟踪技术开发了具有最大半验收角度36°和垂直的太阳能摆动+ 36°至36°的2D海壳集中器。基于该配置文件的分析几何形状,已经进行了MATLAB程序以估计吸收器特定区域上的反射和直接光线的平均数。通过使用该程序的模拟结果,发生入射角的变化对扁平水平吸收器的太阳辐射浓度(Cr),浓度(Cr),局部浓度比分布(LCR)的总数的影响,平均在接受限制范围内确定了集中器的反射数(ANR)和效率。根据模拟结果,观察到LCR分布从昼夜昼夜昼夜大于夏季的冬季均匀,但夏至的光学浓度比估计最大。本文据估计,冬至的海壳集中器的最大光学效率为85.5%。从研究结果对不同季节的吸收剂表面比较结果的研究,发现比夏季更均匀。

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