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Energy and exergy analysis of solar hybrid adsorption refrigeration system

机译:太阳能混合吸附制冷系统的能量和火用分析

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摘要

In this paper, performance of a solar hybrid adsorption refrigeration (AR) system is investigated experimentally. Such a system was built and tested under the conditions at National Institute of Technology Calicut, Kerala, India. The hybrid system has been designed for heating 501 of water from 25 to 90℃ as well as cooling 101 of water from 25 to 10℃. The experimental results demonstrate that the refrigerator has a cooling capacity of 47-78 W with a cycle coefficient of performance (COP) of 0.19 and maximum possible COP of 0.45. In exergy analysis of the system, the irreversibility and exergetic efficiency of each component of the system have been calculated. The exergy analysis reveals that the main source of irreversibility is the adsorbent bed of the AR system, emphasising that the input heat energy is not utilised efficiently due to material constraints. The exergetic efficiencies of condenser, expansion device, evaporator and adsorbent bed are found as 42.3%, 79.8%, 54.7% and 11%, respectively.
机译:本文通过实验研究了太阳能混合吸附制冷(AR)系统的性能。这种系统是在印度喀拉拉邦卡利卡特国家技术研究所的条件下建造和测试的。混合系统设计用于将501的水从25加热到90℃,以及将101的水从25冷却到10℃。实验结果表明,该冰箱的制冷量为47-78 W,循环性能系数(COP)为0.19,最大可能COP为0.45。在系统的火用分析中,已计算了系统各组成部分的不可逆性和能效。火用分析表明不可逆性的主要来源是AR系统的吸附床,强调由于材料的限制不能有效利用输入的热能。发现冷凝器,膨胀装置,蒸发器和吸附床的能效分别为42.3%,79.8%,54.7%和11%。

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