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Evaluation of anti-soiling coatings for CSP reflectors under realistic outdoor conditions

机译:在现实的室外条件下评估CSP反射器的防污涂料

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摘要

Soiling of solar reflectors affects their reflectance and has a direct impact on the power output of concentrated solar power (CSP) plants. One way to minimize the efficiency losses is the implementation of anti-soiling coatings on the reflector surfaces. This method is being studied for the past decade, but has not been successfully commercialized yet. The purpose of the coatings is to reduce soiling and improve the washability of the reflectors. In this work results are presented from an extensive outdoor campaign of two potential anti-soiling coatings under realistic conditions at a representative CSP site in southern Spain. Nearly six years of outdoor data are available, which makes this campaign the longest published on this type of coatings. Regular cleaning and reflectance measurements were performed during the exposure and conclusions about the performance and durability of the coatings are drawn. It is shown that in the initial state the coatings show an advantageous behavior, resulting in higher reflectance during outdoor exposure due to less soiling and better cleaning of the reflectors. The second main finding is that durability is an important issue for the implemented coatings, as their properties degrade over time resulting in lower reflectance values after several years of exposure compared to conventional glass reflectors.
机译:太阳反射器的污染会影响其反射率,并直接影响聚光太阳能(CSP)装置的功率输出。最小化效率损失的一种方法是在反射器表面上实施防污涂层。在过去的十年中一直在研究这种方法,但尚未成功地商业化。涂层的目的是减少污染并提高反射镜的可洗性。在这项工作中,结果是在西班牙南部的一个具有代表性的CSP现场,在现实条件下进行了两次潜在的防污涂料大规模户外运动的结果。可获得近六年的室外数据,这使该活动在此类涂料上发布的时间最长。在曝光期间进行定期清洁和反射率测量,并得出有关涂层性能和耐久性的结论。结果表明,在初始状态下,涂层表现出有利的性能,由于较少的污染和更好地清洁反射镜,因此在室外暴露时具有较高的反射率。第二个主要发现是,对于已实施的涂层,耐久性是一个重要的问题,因为与常规的玻璃反射器相比,其性能会随着时间的流逝而降低,从而导致在暴露数年后其反射率值降低。

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