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Investigation of factors affecting condensation on soiled PV modules

机译:调查污染的光伏组件上凝结的因素

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Condensation contributes to soiling of photovoltaic modules by trapping dust particles and, in certain conditions, leaving a material bridge between particles and the surface after evaporating. This study investigated the effects of four parameters on condensation on soiled surfaces: (i) relative humidity (RH), (ii) surface dew point temperature difference, (iii) hygroscopic dust content, and (iv) surface wettability. Natural and synthetic dust mixtures of various compositions were studied via water adsorption isotherms, XRD, ion chromatography and optical microscopy, on hydrophilic and hydrophobic surfaces, in the lab and field. It was found that water uptake by surface dust was strongly dependent on its content of hygroscopic material, and such material allowed microscopic condensation droplets to exist on a soiled glass coupon even when it was significantly warmer than the dew point. A hydrophobic PTFE surface did not greatly retard the onset of condensation, compared to a glass surface, but did inhibit its growth. The implications for anti-soiling coatings are that it would be a difficult goal to eliminate condensation, and their performance will be influenced by dust composition and factors affecting condensation run-off such as RH and tilt angle. Variation in such parameters may partly explain inconsistent results from coating field trials reported so far.
机译:冷凝会通过捕获灰尘颗粒而使光伏组件变脏,并且在某些条件下,蒸发后会在颗粒和表面之间留下材料桥接。这项研究调查了四个参数对脏表面凝结的影响:(i)相对湿度(RH),(ii)表面露点温度差,(iii)吸湿性粉尘含量和(iv)表面润湿性。在实验室和现场通过亲水和疏水表面上的吸水等温线,XRD,离子色谱和光学显微镜研究了各种成分的天然和合成粉尘混合物。已经发现,表面灰尘吸收的水分在很大程度上取决于其吸湿性物质的含量,并且这种物质即使在显着高于露点的温度下也允许微小的凝结液滴存在于弄脏的玻璃试片上。与玻璃表面相比,疏水性PTFE表面没有很大程度地阻止凝结的开始,但确实抑制了它的生长。防污涂料的含义是消除凝结是一个困难的目标,其性能将受到粉尘成分和影响凝结径流的因素(如RH和倾斜角)的影响。这些参数的变化可能部分解释了迄今为止报道的涂层现场试验结果不一致的情况。

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