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Multi-year field assessment of seasonal variability of photovoltaic soiling and environmental factors in a desert environment

机译:沙漠环境中光伏污染与环境因素季节变异性的多年现场评估

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In this study, we investigated multi-year seasonal trends of photovoltaic (PV) soiling in the desert environment conditions of Qatar. Field measurements of PV modules' power and environmental factors were recorded continuously from 2014 to 2019. The PV soiling loss varied significantly from month to month, showing repeated seasonal trends; the year-to-year variability was not significant. Soiling rates in cold, warm, and rainy seasons appeared to be quite different and influenced by environmental factors. Over the six years of study, 75% of days had a negative soiling rate (i.e., increase in soiling on the PV panels), while the remaining 25% of days had a positive value due to the resuspension of the dust from the panels occurring by the strong wind. Key influential factors in the seasonal soiling variability and their respective correlations were also presented. It was found that a minimum rainfall of 3 mm only was required to fully clean the PV modules. Dust storms mainly occurred in summer months, when soiling losses accumulated in these most soiled months, yet the impact of dust storms during the winter season was found to be more severe than during the summer. Overall, dust storms caused 8% attenuation of solar radiation reaching the PV panels and increased the annual average soiling rate by 23% comparatively to non-dust storm days. Our study shows seasonal soiling profiles in an Arabian desert environment, which may allow PV plant operators to optimize their cleaning schedules and thereby reducing plant operational and maintenance costs.
机译:在这项研究中,我们调查了卡塔尔沙漠环境条件下的光伏(PV)的多年季节性趋势。 PV模块的电力和环境因素的现场测量从2014年到2019年持续记录。光伏污染损失从一个月到月份显着变化,呈现反复季节性趋势;年度变异性并不重要。寒冷,温暖和雨季的污染率似乎是完全不同的,受环境因素的影响。在六年的研究中,75%的日子具有负污染率(即PV面板上污染的增加),而剩余的25%的日子由于灰尘从发生的面板中重悬浮而产生正值由强风。还提出了季节性污染变异性及其各自相关性的关键影响因素。结果发现,仅需要3毫米的最低降雨量来完全清洁光伏模块。当夏季主要发生的沙尘暴主要发生在这些最染色的月份中污染的污染损失,但冬季尘埃风暴的影响被发现比夏季更严重。总体而言,尘埃风暴引起了8%的太阳辐射衰减到达光伏板,并与非尘暴日相比增加了23%的年平均污染率。我们的研究显示了阿拉伯沙漠环境中的季节性污染型材,这可能允许光伏工厂运营商优化其清洁时间表,从而降低了工厂的运营和维护成本。

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