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首页> 外文期刊>International journal of sustainable energy >Thermal performance analysis of small-sized solar parabolic trough collector using secondary reflectors
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Thermal performance analysis of small-sized solar parabolic trough collector using secondary reflectors

机译:二级反射器小型太阳能抛物线收集器的热性能分析

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摘要

In this paper, theoretical analysis of receiver tube misalignment, the design of secondary reflector and experimental analysis of a small-sized solar parabolic trough collector (PTC) with and without secondary reflectors are represented. Experimental analysis of PTC has been done using a parabolic secondary reflector (PSR) and triangular secondary reflector (TSR) and compared with PTC without secondary reflector (WSR). The maximum outlet temperature of heat transfer fluid is observed as 49.2°C, 47.3°C and 44.2°C in the case of PSR, TSR and WSR conditions, respectively. The maximum thermal efficiency of 24.3%, 22.5% and 17.8% is observed in the case of PSR, TSR and WSR conditions, respectively. The circumferential temperature difference on the outer surface of the receiver tube is obtained more uniform in the case of PSR and TSR than WSR condition. This indicates that the use of a secondary reflector can improve the performance of a solar PTC system.
机译:本文在本文中,表示接收管未对准的理论分析,具有和不具有二次反射器的小型太阳能抛物槽收集器(PTC)的二次反射器设计和实验分析。 使用抛物线次级反射器(PSR)和三角二次反射器(TSR)进行了PTC的实验分析,并与没有次级反射器(WSR)的PTC进行比较。 在PSR,TSR和WSR条件的情况下,将传热流体的最大出口温度观察为49.2℃,47.3℃和44.2℃。 在PSR,TSR和WSR条件的情况下,在PSR,TSR和WSR条件下观察到24.3%,22.5%和17.8%的最大热效率。 在PSR和TSR的情况下,在PSR和TSR的情况下获得接收管的外表面上的圆周温度差比WSR条件更均匀。 这表明使用二次反射器可以提高太阳能PTC系统的性能。

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