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Experimental study of factors affecting dust accumulation and their effects on the transmission coefficient of glass for solar applications

机译:影响太阳能应用玻璃粉尘积累的因素及其对玻璃透射系数的影响的实验研究

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Solar collectors and Photovoltaic panels are the most common applications of solar energy. Although how to increase the efficiency of these systems in different ways has been vastly studied and analyzed, the effect of dust accumulation on panel's and collector's efficiency has been largely ignored. To overcome this deficit, an experiment was developed in Isfahan, Iran, to investigate the factors affecting dust accumulation and their effects on the transmission coefficient of glass. The results indicate factors such as installation tilt, azimuth angle, dominant wind direction and the time in which samples are placed within the environment, are related to dust accumulation density on surface and transmission coefficient reduction. Up to 25% decline in the transmission coefficient caused by the accumulation of dust on the surface was observed during the 70-day test period. Given that the dust fall density is strictly depended on weather conditions during the test period, unlike previous studies, in this article the transmission reduction relation, instead of time is derived in terms of dust accumulation density on the surface. This equation is generalized and applicable to other regions and even different weather conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:太阳能收集器和光伏面板是太阳能的最常见应用。尽管已经对如何以不同方式提高这些系统的效率进行了广泛的研究和分析,但是灰尘堆积对面板和集尘器效率的影响却被大大忽略了。为了克服这一缺陷,在伊朗伊斯法罕开展了一项实验,以研究影响灰尘积累的因素及其对玻璃透过系数的影响。结果表明,诸如安装倾斜度,方位角,主导风向和将样本放置在环境中的时间等因素与表面上的灰尘堆积密度和传输系数的降低有关。在70天的测试期间,观察到由于灰尘在表面上的堆积而导致的传输系数下降了25%。考虑到在试验期间粉尘降落的密度严格取决于天气条件,与以前的研究不同,在本文中,根据表面上的粉尘堆积密度,得出了传输减少关系,而不是时间。该方程式是通用的,适用于其他地区甚至不同的天气条件。 (C)2017 Elsevier Ltd.保留所有权利。

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