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Exergy analysis of thin-film solar PV module in ground-mount, floating and submerged installation methods

机译:薄膜太阳能光伏模块在地面安装,浮动和淹没安装方法中的出境分析

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The scope for water-based photovoltaic (WPV) installations has raised questions related to its performance in comparison to traditional land-based photovoltaic (LPV) installations. In literature, few studies exist, and they mainly highlighted the performance of WPV and LPV based on energy analysis but fails to give a detailed understanding. In this paper, the exergy based parametric approach is used to understand the realistic performance and the energy conversion process of the photovoltaic (PV) module in both water and land environments. Three amorphous silicon thin-film PV modules installed in ground-mount PV (GMPV), floating PV (FPV), and submerged PV (SPV) methods are considered for experimentation to understand the exergy performance. The experimental results show that the exergy efficiency is varied for each installation method. It is observed that the exergy efficiency of SPV is 3.07% higher than the FPV and 43.65% higher than GMPV installation methods, respectively. Overall, the thermodynamic analysis of the thin-film PV module provided in this study delivered a critical understanding of the performance, and this study will serve as a useful reference in selecting the best installation methods.
机译:与传统的陆地光伏(LPV)安装相比,水性光伏(WPV)装置的范围提出了与其性能相关的问题。在文献中,存在很少的研究,它们主要突出了基于能量分析的WPV和LPV的性能,但未能提供详细的理解。在本文中,基于漏洞的参数方法用于了解水和陆地环境中光伏(PV)模块的现实性能和能量转换过程。安装在地安装PV(GMPV)的三种非晶硅薄膜PV模块,浮动PV(FPV)和浸没式PV(SPV)方法,以便实验以了解漏洞性能。实验结果表明,对于每种安装方法,效率的效率变化。观察到,SPV的漏极效率分别比FPV高3.07%,分别比GMPV安装方法高出43.65%。总体而言,本研究中提供的薄膜PV模块的热力学分析发表了对性能的关键理解,本研究将作为选择最佳安装方法的有用参考。

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