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Performance Evaluation of a Nonimaging Solar Concentrator in Terms of Optical and Thermal Characteristics

机译:根据光学和热学特性评估非成像太阳能聚光器的性能

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摘要

A nontracking, nonimaging solar concentrator with a low-heat-loss configuration was proposed, and its optical and thermal performance was investigated. The reflector has a compound parabolic and involute shape so that the absorber is heated as uniformly as possible. To eliminate heat loss by conduction and convection, the mirror and absorber are enclosed in an evacuated glass tube. The concentrator presented here was simulated for the location of Sendai, Japan, and its acceptance angle was estimated as 23.44°. A ray-tracing model was developed to evaluate its optical and thermal performance. The average optical efficiency was evaluated by a 2-D ray-tracing model, and a value of 72.7% was obtained. A thermal analysis of the absorber was conducted to evaluate the temperature uniformity. The results indicate that the temperature distribution of the absorber can be considered uniform. The thermal efficiency of the proposed solar concentrator was calculated as a function of the incidence angle and absorber temperature. With a concentration ratio of 2.51, the concentrator, even at an absorber temperature of 373 K operates with an average efficiency of 47.8%, although the absorber was assumed to have a gray surface. The concentrator's thermal efficiency was compared with that of other solar collectors, and found to be higher than that of conventional solar collectors.
机译:提出了一种具有低热损耗配置的非跟踪式非成像太阳能聚光器,并研究了其光学和热性能。反射器具有复合的抛物线和渐开线形状,因此吸收器要尽可能均匀地加热。为了消除由于传导和对流造成的热损失,反射镜和吸收器被封闭在一个真空玻璃管中。此处介绍的集中器是针对日本仙台的位置进行模拟的,其接收角估计为23.44°。开发了光线追踪模型以评估其光学和热性能。通过2-射线追迹模型评价平均光效率,结果为72.7%。对吸收器进行热分析以评估温度均匀性。结果表明吸收器的温度分布可以认为是均匀的。拟议的太阳能集中器的热效率是根据入射角和吸收器温度计算的。在浓度比为2.51的情况下,尽管吸收器的表面呈灰色,但即使在吸收器温度为373 K的情况下,该浓缩器的平均效率也为47.8%。将聚光器的热效率与其他太阳能集热器进行了比较,发现其效率高于传统太阳能集热器。

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