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评估自清洁机制以提高屋顶安装太阳能光伏板的性能:一项比较研究。

Evaluation of self-cleaning mechanisms for improving performance of roof-mounted solar PV panels: A comparative study.

机构信息

Mechanical Engineering Department, University of Engineering & Technology (UET), Taxila, Pakistan.

Mechanical Engineering Department, University of Management and Technology Sialkot, Sialkot, Pakistan.

出版信息

PLoS One. 2024 Oct 29;19(10):e0309115. doi: 10.1371/journal.pone.0309115. eCollection 2024.

Abstract

Solar panel installation is generally exposed to dust. Therefore, soiling on the surface of the solar panels significantly reduces the effectiveness of solar panels. Accumulation of dust also shortens their lifespan and reduces efficiency by about 15% to 20%. A significant reduction in the efficiency of solar photovoltaic panels has been observed due to inadequate insulation and dust deposition or shading. To harness maximum solar energy from solar panels up to their rated capacity, they need to be cleaned periodically. Therefore, the current study focuses on the comparative performance analysis of two distinct types of self-cleaning mechanisms, namely self-cleaning wiper (SCW) and nano-coating method. These methods are economical and sustainable for the standard atmospheric conditions of Pakistan. Solar panels (reference, nano-coated, and self-cleaning wiper mechanism) were placed on the roof of the Mechanical Engineering Department MUST Mirpur AJK for five weeks. Solar irradiance, dust density & performance parameters of these three panels were recorded on weekly basis. It was observed that an increase in the rate of dust deposition negatively affects the conversion efficiency of solar panels. When dust density was increased from 7.5 to 18.15 (g/m2), the percentile drops in rated power (50W) for reference, nano-coated, and self-cleaning wiper mechanisms are 37%, 33% and 23%, respectively. Moreover, the payback period of nano-coated and SCW is 1.07 years and 2.79 years, respectively.

摘要

太阳能电池板的安装通常会暴露在灰尘中。因此,太阳能电池板表面的污垢会显著降低其效率。灰尘的积累还会缩短其寿命,并降低效率约 15%至 20%。由于绝缘不足和灰尘沉积或遮挡,太阳能光伏电池板的效率显著降低。为了从太阳能电池板中最大限度地获取太阳能,达到其额定容量,需要定期对其进行清洁。因此,本研究重点关注两种不同自清洁机制的比较性能分析,即自清洁刮刀 (SCW) 和纳米涂层方法。这些方法在巴基斯坦的标准大气条件下是经济且可持续的。太阳能电池板(参考、纳米涂层和自清洁刮刀机制)被放置在 MUST 机械工程系的屋顶上,持续了五周。每周记录这三个面板的太阳辐照度、灰尘密度和性能参数。结果表明,灰尘沉积率的增加会对太阳能电池板的转换效率产生负面影响。当灰尘密度从 7.5 增加到 18.15(g/m2)时,参考、纳米涂层和自清洁刮刀机制的额定功率(50W)分别下降 37%、33%和 23%。此外,纳米涂层和 SCW 的投资回收期分别为 1.07 年和 2.79 年。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccc3/11521312/e37b9249598a/pone.0309115.g001.jpg

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