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Experimental energy and exergy analysis of a flat plate solar air heater with a new design of integrated sensible heat storage

机译:新型集成显热设计的平板太阳能空气加热器的实验能量和火用分析

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This paper presents an experimental energy and exergy analysis of a novel flat plate solar air heater (SAH). It has a specially designed absorber plate made up of copper strips (copper tubes with extended copper fins on both sides), welded longitudinal to one another. This structure acts as an integrated absorber-cum-storage unit, where a high quality synthetic oil (Therminol-55) is filled within those copper tubes as a sensible heat storage (SHS) medium. To study the impact of this novel design and the sensible heat storage over the performance of the SAH, the results were compared with the output of a conventional SAH of similar dimensions. For the precise comparison of their performances, the experiments were conducted on both the SAHs at same location, simultaneously. It ensures identical testing conditions such as the amount of solar radiation received and surrounding environment of the experimental setup. Exergy analysis is a powerful thermodynamic tool and it helps in computing the actual output of a system, theoretically. It helps the researchers to optimize the system design to compensate the present and also the future needs. Experiments were conducted for two different mass flow rates (0.018 kg/s, and 0.026 kg/s). The results showed that the maximum energy and exergy efficiency obtained was in the range of 49.4-59.2% and 18.25-37.53% respectively, for the SAH with sensible storage at rh = 0.026 kg/s. Besides, the SAH with sensible heat storage was observed to perform better than the conventional flat plate SAH without storage. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了新型平板太阳能空气加热器(SAH)的实验能量和火用分析。它有一个专门设计的吸收器板,该吸收器板由铜条(两侧带有延伸的铜翅片的铜管)相互纵向焊接而成。这种结构充当集成的吸收器兼存储单元,在这些铜管中填充了高质量的合成油(Therminol-55)作为显热存储(SHS)介质。为了研究这种新颖设计和显热存储对SAH性能的影响,将结果与类似尺寸的常规SAH的输出进行了比较。为了精确比较它们的性能,在同一位置的两个SAH上同时进行了实验。它可以确保相同的测试条件,例如接收到的太阳辐射量和实验装置的周围环境。火用分析是功能强大的热力学工具,从理论上讲,它有助于计算系统的实际输出。它可以帮助研究人员优化系统设计,以补偿当前以及未来的需求。针对两种不同的质量流速(0.018 kg / s和0.026 kg / s)进行了实验。结果表明,对于在rh = 0.026 kg / s时合理存储的SAH,获得的最大能量和火用效率分别在49.4-59.2%和18.25-37.53%的范围内。此外,观察到具有显热储能的SAH的性能优于没有储热的常规平板SAH。 (C)2016 Elsevier Ltd.保留所有权利。

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