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Soiling and Cleaning of Polymer Film Solar Reflectors

机译:聚合物膜太阳反射镜的污染和清洁

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摘要

This paper describes the accelerated ageing of commercially available silvered polymer film by contact cleaning using brushes and water in the presence of soiling created by dust and sand particles. These conditions represent cleaning regimes in real concentrating solar power (CSP) solar fields in arid environments, where contact cleaning using brushes and water is often required to clean the reflecting surfaces. Whilst suitable for glass reflectors, this paper discusses the effects of these established cleaning processes on the optical and visual characteristics of polymer film surfaces, and then describes the development of a more benign but effective contact cleaning process for cleaning polymer reflectors. The effects of a range of cleaning brushes are discussed, with and without the presence of water, in the presence of sand and dust particles from selected representative locations. The experiments were repeated using different experimental equipment at Plataforma Solar de Almería (PSA) in Spain and Cranfield University in the UK. The results highlight differences that are attributable to the experimental methods used. Reflectance measurements and visual inspection show that a soft cleaning brush with a small amount of water, used in a cleaning head with both linear and rotational motion, can clean polymer film reflecting surfaces without inflicting surface damage or reducing specular reflectance.
机译:本文介绍了在存在灰尘和沙粒污染的情况下,通过使用刷子和水进行接触清洁来加速商业化的镀银聚合物薄膜的老化过程。这些条件代表了在干旱环境中的实际聚光太阳能(CSP)太阳场中的清洁方式,在该环境中,通常需要使用刷子和水进行接触清洁以清洁反射面。尽管适用于玻璃反射器,但本文讨论了这些已建立的清洁工艺对聚合物膜表面的光学和视觉特性的影响,然后描述了一种用于清洁聚合物反射器的良性但有效的接触清洁工艺的发展。讨论了在有水或无水,有来自选定代表性地点的沙尘颗粒的情况下,一系列清洁刷的效果。在西班牙的Plataforma Solar deAlmería(PSA)和英国的Cranfield University,使用不同的实验设备重复进行了实验。结果突出了归因于所使用的实验方法的差异。反射率测量和目测检查表明,用少量水的软清洁刷以线性和旋转运动用于清洁头,可以清洁聚合物膜反射表面,而不会造成表面损坏或降低镜面反射率。

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