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Direct monitoring of energy lost due to soiling on first solar modules in California

机译:直接监测由于加利福尼亚第一批太阳能电池组件的污染而造成的能量损失

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The optical loss caused by the accumulation of dirt and other contaminants on solar collectors is the third most important meteorological input, after insolation and air temperature, that determines energy yield in a photovoltaic power plant. First Solar is monitoring the impact of dust accumulation on solar panels using a methodology similar to that proposed by Ryan and colleagues in a long-term study in Eugene, OR. The method seeks to be a practical and automated technique for measuring the soiling rate, foregoing complex equipment such as I(V ) curve tracers, and eliminating other performance-influencing factors. The test setup includes several First Solar plane-of-array modules that are allowed to accumulate natural contaminants, and several controls held clean by regular washing. This study reveals clear region-specific soiling trends as well as insight into the amount of rainfall required for full recovery of module performance. Soiling rates of up to 11.5% per month are observed in heavy agricultural areas. As little as 0.5 mm of rainfall is sufficient to completely clean a dirty frameless module in regions with lighter soiling rates.
机译:在集热器和空气温度之后,由灰尘和其他污染物在太阳能收集器上积聚引起的光损耗是第三重要的气象输入,它决定了光伏电站的发电量。 First Solar正在使用一种类似于Ryan及其同事在俄勒冈州尤金(Eugene)进行的长期研究中提出的方法,监测灰尘堆积对太阳能电池板的影响。该方法寻求成为一种实用的自动化技术,用于测量污染率,克服诸如I(V)曲线示踪器之类的复杂设备并消除其他影响性能的因素。测试设置包括几个允许堆积自然污染物的First Solar平面阵列模块,以及几个通过定期清洗保持清洁的控件。这项研究揭示了明确的特定区域污染趋势以及对完全恢复模块性能所需的降雨量的了解。在繁重的农业地区,每月的污染率高达11.5%。仅0.5 mm的降雨量就足以在污染率较低的区域完全清洁脏的无框模块。

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