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Heat transfer enhancement of concentrated solar absorber using hollow cylindrical fins filled with phase change material

机译:使用相变材料填充空心圆柱形浓缩太阳能吸收器的热传递增强

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A concentrated solar absorber with finned phase change materials was experimentally studied using a Scheffler type parabolic dish concentrator. The absorber's inner surface was fixed with hollow cylindrical containers filled with phase change material (PCM) for heat transfer augmentation. The absorber's selected PCM was acetanilide (Melting point of 116 degrees C)dthe cylindrical capsules protruding into the fluid side to create turbulence and mixing and acting as fins. The absorber surface temperature was observed to be about 130 e150 degrees C during the outdoor tests while passing fluid through the absorber. The fluid flow rate varied from 60 to 100 kg/h during the outdoor experiments. The peak energy and exergy efficiency of parabolic dish collector (PDC) at the fluid flow rate of 80 kg/h with PCM integrated solar absorber was found to be about 67.88% and 6.96%, respectively. The integration of cylindrical PCM containers resulted in more heat transfer augmentation in the solar absorbers. The optimized solar absorber could be suitable for various applications like steam generation, biomass gasification, space heating, and hydrogen generation.(c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用舍克弗莱型抛物线碟浓缩器实验研究具有翅片相变材料的浓缩太阳能吸收器。吸收器的内表面用填充有相变材料(PCM)的中空圆柱形容器来固定,用于传热增强。吸收器的选择PCM是乙酰硅烷(熔点116℃)D该圆柱形胶囊突出到流体侧,以产生湍流和混合和用作翅片。在室外测试期间观察到吸收剂表面温度为约130E150℃,同时通过吸收器通过流体。在室外实验期间,流体流速在60至100kg / h中变化。抛物线碟收集器(PDC)在PCM集成太阳能吸收器的流体流速下的抛物线碟收集器(PDC)的峰值能量和高效效率分别为约67.88%和6.96%。圆柱形PCM容器的集成导致太阳能吸收器中的传热增强。优化的太阳能吸收器可以适用于各种应用,如蒸汽发生,生物质气化,空间加热和氢气产生。(c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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