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首页> 外文期刊>Solar Energy >Phase change materials in solar photovoltaics applied in buildings: An overview
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Phase change materials in solar photovoltaics applied in buildings: An overview

机译:在建筑物中应用太阳能光伏的相变材料:概述

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摘要

Building sector is responsible for approximately 40% of global carbon dioxide emission. Accordingly, any measures for reducing building energy consumption or providing it with renewable sources would substantially benefit sustainable development. A major approach towards this goal could be the application of photovoltaic modules in buildings, which could be conducted in various configurations. Integrating phase change materials with photovoltaic panels could simultaneously provide thermal regulation for the panel as well as thermal energy storage for the building. During the last two decades, research efforts on photovoltaic-phase change material systems for building applications have considerably grown. A systematic review of the current state of knowledge on photovoltaic-PCM modules applied in buildings could greatly benefit future research in this area. With this purpose in mind, the present study reviews the building applications of photovoltaic-phase change material units. The study aims to classify the existing literature on the field for acquiring a better understanding of the technological progress as well as identifying the existing gaps and future research prospects. Research attempts are categorized in four experimental, numerical, optimization, and economic sections. Each category is thoroughly analyzed and discussed in terms of current state of knowledge. Finally, technical analysis and possible future subjects are introduced and discussed.
机译:建筑业负责全球二氧化碳排放的约40%。因此,任何用于减少建筑能源消耗或提供可再生能源的措施将大大受益于可持续发展。实现这一目标的主要方法可以是建筑物中的光伏模块的应用,这可以以各种配置进行。将相变材料与光伏板相同可以同时为面板提供热调节以及建筑物的热能储存。在过去二十年中,建筑应用的光伏相变材料系统的研究努力大大增加。对当前知识状态的系统审查,在建筑物中应用的光伏 - PCM模块可以极大地利用该领域的未来研究。目前研究借助于此目的,审查了光伏相变材料单元的建筑应用。该研究旨在将现有文献分类在领域,以获取更好地了解技术进步以及识别现有的差距和未来的研究前景。研究尝试分为四项实验,数值,优化和经济部分。在当前知识状态方面彻底分析并讨论了每个类别。最后,介绍并讨论了技术分析和可能的未来科目。

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