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Correlating Outdoor Exposure with Accelerated Aging Tests for Aluminum Solar Reflectors

机译:将户外曝晒与铝质太阳反射镜的加速老化测试相关联

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摘要

Guaranteeing the durability of concentrated solar power (CSP) components is crucial for the success of the technology. The reflectors of the solar field are a key component of CSP plants, requiring reliable methods for service lifetime prediction. So far, no proven correlations exist to relate accelerated aging test results in climate chambers with relevant CSP exposure sites. In this work, correlations have been derived for selected testing conditions that excite the same degradation mechanisms as for outdoor exposure. Those testing conditions have been identified by performing an extensive microscopic comparison of the appearing degradation mechanisms on reference samples that have been weathered outdoors with samples that underwent a high variety of accelerated aging experiments. The herein developed methodology is derived for aluminum reflectors and future work will study its applicability to silvered-glass mirrors
机译:确保集中式太阳能(CSP)组件的耐用性对于该技术的成功至关重要。太阳能场的反射器是CSP工厂的关键组件,需要可靠的方法来预测使用寿命。到目前为止,尚无将气候室加速老化测试结果与相关CSP暴露地点相关联的证明相关性。在这项工作中,已得出了激发与户外暴露相同的降解机理的选定测试条件的相关性。通过对在室外风化的参考样品和经历了各种加速老化实验的样品进行外观降解机理的广泛的微观比较,已经确定了这些测试条件。本文开发的方法是针对铝反射器而衍生的,未来的工作将研究其在镀银玻璃镜中的适用性

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