A new PV soiling monitoring device for optimized cleaning strategy

A. Azouzoute, Mostafa Chouitar, M. Garoum, E. Bennouna, A. Ghennioui
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引用次数: 6

Abstract

Solar PV technology is now widely exploited as a source of energy production. However, the PV panels are generally affected by a variety of factors that decrease the efficiency of the system especially those related to the dust deposition. Therefore, in this study, a new methodology to quantify the drop of transmittance of the glass on the surface of a PV panel was investigated. The basic of this method is using the Brewster angle to evaluate the intensity of the reflected ray from the surface of the glass in the presence of different amount of density of dust deposition. The results showed that the intensity of the reflected ray using Brewster angle decrease with the increase of the density of deposition on the surface of the glass sample. The experiment elucidated that this new method can be a significant methodology to quantify the effect of dust deposition and to optimize the cleaning on the solar PV plant.Solar PV technology is now widely exploited as a source of energy production. However, the PV panels are generally affected by a variety of factors that decrease the efficiency of the system especially those related to the dust deposition. Therefore, in this study, a new methodology to quantify the drop of transmittance of the glass on the surface of a PV panel was investigated. The basic of this method is using the Brewster angle to evaluate the intensity of the reflected ray from the surface of the glass in the presence of different amount of density of dust deposition. The results showed that the intensity of the reflected ray using Brewster angle decrease with the increase of the density of deposition on the surface of the glass sample. The experiment elucidated that this new method can be a significant methodology to quantify the effect of dust deposition and to optimize the cleaning on the solar PV plant.
一种用于优化清洗策略的新型PV污染监测装置
太阳能光伏技术现在作为一种能源生产方式被广泛利用。然而,光伏板通常受到各种因素的影响,这些因素会降低系统的效率,特别是与粉尘沉积有关的因素。因此,在本研究中,研究了一种量化光伏电池板表面玻璃透射率下降的新方法。该方法的基础是利用布鲁斯特角来评价在不同粉尘密度下玻璃表面反射光线的强度。结果表明:随着玻璃表面沉积密度的增加,布鲁斯特角反射光线的强度减小;实验结果表明,该方法可作为一种重要的方法来量化粉尘沉积的影响,并优化太阳能光伏电站的清洁。太阳能光伏技术现在作为一种能源生产方式被广泛利用。然而,光伏板通常受到各种因素的影响,这些因素会降低系统的效率,特别是与粉尘沉积有关的因素。因此,在本研究中,研究了一种量化光伏电池板表面玻璃透射率下降的新方法。该方法的基础是利用布鲁斯特角来评价在不同粉尘密度下玻璃表面反射光线的强度。结果表明:随着玻璃表面沉积密度的增加,布鲁斯特角反射光线的强度减小;实验结果表明,该方法可作为一种重要的方法来量化粉尘沉积的影响,并优化太阳能光伏电站的清洁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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