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An integrated photovoltaic thermal solar (IPVTS) system with earth water heat exchanger cooling: Energy and exergy analysis

机译:具有地下水热交换器冷却功能的集成式光伏热太阳能(IPVTS)系统:能量和火用分析

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摘要

In the current paper, a new hybrid system is investigated in which integrated photovoltaic thermal solar system (IPVTS) is coupled with earth water heat exchanger (EWHE). The performance of such coupled system is evaluated analytically by developing a theoretical model and validated experimentally on an experimental set-up installed in Pilani, India. Further to identify the grey areas for the improvement and to utilize the maximum energy, second law thermodynamic analysis of coupled system has been carried out in terms of exergy losses and exergy destructions. An electrical efficiency comparison was made between the PV panel connected to the broad water channel cooling and normal PV panel. The results show that with EWHE cooling, there is increase in experimental electrical efficiency of IPVTS by 1.021.41% as compared to without cooling. The second law analysis for two different scenarios was carried out. The second law analysis shows that the exergetic efficiency for a first scenario varies from 8.50% to 8.75%; while for the second scenario, it ranges from 8.16% to 8.54%. The analysis provides the feasibility of IPVTS coupled with EWHE system which could be used for the semi-arid regions of North-West India. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,研究了一种新的混合系统,其中集成的光伏热太阳能系统(IPVTS)与地下水热交换器(EWHE)耦合。这种耦合系统的性能通过建立理论模型进行分析评估,并在印度Pilani的实验装置上通过实验验证。为了确定灰色区域以进行改进并利用最大能量,已对耦合系统进行了第二定律热力学分析,分析的依据是火用损失和火用破坏。在连接到宽水通道冷却的光伏面板和普通光伏面板之间进行了电效率比较。结果表明,使用EWHE冷却,与不使用冷却相比,IPVTS的实验电效率提高了1.021.41%。进行了两种不同情况的第二定律分析。第二定律分析表明,第一种情况的精力充沛效率从8.50%到8.75%不等。而第二种情况则介于8.16%至8.54%之间。分析提供了IPVTS结合EWHE系统的可行性,该系统可用于印度西北部的半干旱地区。 (C)2017 Elsevier Ltd.保留所有权利。

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