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Quantification of a Minimum Detectable Soiling Level to Affect Photovoltaic Devices by Natural and Simulated Soils

机译:天然和模拟土壤对可影响光伏设备的最小可检测污物水平的量化

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Soil accumulation on photovoltaic (PV) modules presents a challenge to long-term performance prediction and lifetime estimates due to the inherent difficulty in quantifying small changes over an extended period. Low mass loadings of soil are a common occurrence but remain difficult to quantify. In order to more accurately describe the specific effects of sparse soil films on PV systems, we have expanded upon an earlier technique to measure the optical losses due to an artificially applied obscurant film. A synthetic soil analog was sprayed onto glass coupons at very brief intervals with a high-volume, low-pressure pneumatic sprayer. Light transmission through the grime film was evaluated using a quantum efficiency test stand and UV/vis spectroscopy. A 0.1-g/m grime loading was determined to be the limit of mass measurement sensitivity, which is similar to some reports of daily soil accumulation. Predictable, linear decreases in transmission were observed for samples with a mass loading between 0.1 and 0.5 g/m. A similar change was observed for soiled coupons from an outdoor monitoring station. Collected soil from the field coupons was analyzed to develop a compositional analog for indoor studies. Natural and synthetic soils produced similar decreases in transmission.
机译:由于无法量化长时间内的微小变化,因此光伏(PV)模块上的土壤积聚对长期性能预测和寿命估算提出了挑战。低质量的土壤负荷很常见,但仍然难以量化。为了更准确地描述稀疏土壤膜对光伏系统的特定影响,我们扩展了一种较早的技术来测量由于人工施加的遮蔽膜导致的光损耗。用大容量,低压气动喷雾器以很短的间隔将合成的土壤类似物喷雾到玻璃样板上。使用量子效率测试台和紫外/可见光谱法评估通过污垢膜的光透射率。确定0.1 g / m的污垢负荷是质量测量灵敏度的极限,这与每日土壤积累的一些报道相似。对于质量负载在0.1和0.5 g / m之间的样品,观察到了透射率的可预测的线性下降。从室外监测站观察到的污损样条也观察到了类似的变化。分析了从田间优惠券收集的土壤,以开发用于室内研究的成分类似物。天然和合成土壤的传播也有类似的下降。

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