THERMAL MANAGEMENT OF SILICON PHOTOVOLTAIC PANELS: A REVIEW (In the press)

S. Nižetić
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Abstract

Photovoltaic (PV) technologies represent a key role in the ongoing energy transition towards the decarbonisation of convectional power systems and to reduce the harmful population impact to environment.  Nowadays, the majority of market available photovoltaic PV technologies are silicon based with a usual energy conversion efficiency of less than 20%. The major drawbacks of the widely used silicon PV technologies are related to performance degradation due to aging as well as performance drops that occur during periods of elevated operating temperatures. In order to improve performance, as well as the lifetime of the PV systems, various cooling techniques have been investigated in the last two decades. The main goal of the specific cooling approaches for PV panels is to ensure efficient thermal management, as well as economic suitability. In this review paper, different cooling strategies are categorized, discussed and thoroughly elaborated in order to provide deep insight related to an expected performance improvement and economic viability. The main results of this review indicate that the cooling approaches for PVs can ensure a performance improvement ranging from about 3% up to 30%, depending if passive or active cooling approaches are applied. The main results also indicate that the economic viability as well as environmental suitability of the specific cooling approaches is not sufficiently discussed in the existing research literature.
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硅光伏板的热管理:综述(已发表)
光伏(PV)技术在正在进行的能源转型中发挥着关键作用,朝着传统电力系统的脱碳方向发展,减少有害的人口对环境的影响。目前,市场上大多数可用的光伏技术都是硅基的,通常能量转换效率低于20%。广泛使用的硅光伏技术的主要缺点是由于老化导致的性能下降以及在工作温度升高期间发生的性能下降。为了提高光伏系统的性能和寿命,在过去的二十年里,人们研究了各种冷却技术。光伏板的特定冷却方法的主要目标是确保有效的热管理,以及经济适用性。在这篇综述文章中,不同的冷却策略进行了分类,讨论和深入阐述,以便提供与预期性能改进和经济可行性相关的深入见解。本综述的主要结果表明,pv的冷却方法可以确保性能提高约3%至30%,这取决于是否采用被动或主动冷却方法。主要结果还表明,在现有的研究文献中,对特定冷却方法的经济可行性和环境适宜性没有进行充分的讨论。
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发文量
8
审稿时长
7 weeks
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