首页> 外文期刊>International Journal of Refrigeration >Introducing a hybrid photovoltaic-thermal collector, ejector refrigeration cycle and phase change material storage energy system (Energy, exergy and economic analysis)
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Introducing a hybrid photovoltaic-thermal collector, ejector refrigeration cycle and phase change material storage energy system (Energy, exergy and economic analysis)

机译:引进混合光伏 - 热集电极,喷射器制冷循环和相变材料储存能量系统(能源,漏极和经济分析)

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摘要

In this study, an integrated system which including photovoltaic-thermal collectors, ejector refrigeration cycle and phase change material storage is developed and analyzed. The electrical power and refrigeration energy of the proposed system are about of 6666 kW and 5395 kW, respectively. The phase-change material storage sub-system consists of capric acid-lauric acid that in the absence of heat source of solar energy at night, 5395 kW refrigeration is released to cool at a temperature of 9 degrees C. The energy and exergy analyses are conducted and the obtained results show that overall thermal and total exergy efficiencies are about of 60.51% and 50.84%, respectively. The sensitivity analysis is performed to investigate the effect of the important operating parameters on the system performance. In this regard, Output temperature, generated heat energy and area of the photovoltaic thermal collectors; solar radiation, produced refrigeration and volume of thermal energy storage are selected. Also, the economic analysis is conducted and the obtained results indicate that the proposed system has an investment return period of 3.405 years and a prime cost of product of 20.45 US$ per ton of refrigeration. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:在该研究中,开发并分析了包括光伏 - 热收集器,喷射器制冷循环和相变材料存储器的集成系统。所提出的系统的电力和制冷能量分别为约6666千瓦和5395千瓦。相变材料储存子系统由癸酸 - 月桂酸组成,在夜间不存在太阳能的热源,5395 kW的制冷在9摄氏度的温度下释放到冷却。能量和漏洞分析是进行,所得结果表明,总体热量和总漏效率分别为约60.51%和50.84%。进行敏感性分析以研究重要的操作参数对系统性能的影响。在这方面,输出温度,产生热能和光伏热量收集器的区域;选择太阳辐射,产生了制造的制冷和热能储存量。此外,进行了经济分析,取得的结果表明,该制度的投资返回期为3.405岁,产品的主要成本为20.45美元,每吨制冷。 (c)2019年Elsevier Ltd和IIR。版权所有。

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