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Experimental performance investigation of modified cavity receiver with fuzzy focal solar dish concentrator

机译:带有模糊聚焦太阳能碟形聚光器的改进型腔接收器的实验性能研究

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In this paper, thermal performance analysis of 20 m~2 prototype fuzzy focal solar dish collector is presented. The focal image characteristics of the solar dish are determined to propose the suitable design of absorber/receiver. First, theoretical thermal performance analysis of the fuzzy focal solar parabolic dish concentrator with modified cavity receiver is carried out for different operating conditions. Based on the theoretical performance analysis, the total heat loss (conduction, convection and radiation heat losses) from the modified cavity receiver is estimated. It is observed that the maximum theoretical efficiencies of solar dish collector are found to be as 79.2% for no wind conditions and 78.2% and 77.8% for side-on and head-on winds speed of 5 m/s respectively. Latter, real time analysis of parabolic dish collector with modified cavity receiver is carried out in terms of stagnation test, time constant test and daily performance test. From stagnation test, the overall heat loss coefficient is found to be 356 W/m~2 K. The time constant test is carried out to determine the influence of sudden change in solar radiation at steady state conditions. The daily performance tests are conducted for different flow rates. It is found that the efficiency of the collector increases with the increase of volume flow rates. The average thermal efficiencies of the parabolic dish collector for the volume flow rate of 100 L/h and 250 L/h are found to be 69% and 74% for the average beam radiation (I_(bn)) of 532 W/m~2 and 641 W/m~2 respectively.
机译:本文对20 m〜2原型模糊焦点太阳能集热器的热性能进行了分析。确定太阳能电池的焦点图像特性,以提出合适的吸收器/接收器设计。首先,针对不同的工作条件,对带有改进型腔式接收器的模糊聚焦太阳抛物面碟形聚光器进行了理论热性能分析。基于理论性能分析,可以估算出改进型腔体接收器的总热损失(传导,对流和辐射热损失)。可以看出,在无风条件下,太阳能集热器的最大理论效率分别为79.2%和5m / s的侧向和正面风速分别为78.2%和77.8%。最后,通过停滞测试,时间常数测试和日常性能测试,对带有改进型腔体接收器的抛物面碟收集器进行了实时分析。通过停滞试验,发现总的热损失系数为356 W / m〜2K。进行了时间常数试验,以确定稳态条件下太阳辐射突然变化的影响。每天针对不同的流量进行性能测试。发现收集器的效率随着体积流量的增加而增加。发现对于100 L / h和250 L / h的体积流量,抛物面集热器的平均热效率分别为532 W / m〜的平均光束辐射(I_(bn))为69%和74%。 2和641 W / m〜2。

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