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Durability of solar reflector materials for secondary concentrators used in CSP systems

机译:用于CSP系统中使用的二次集中器的太阳能反射器材料的耐久性

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摘要

Secondary concentrators are used in solar concentrating systems to redirect solar beams reflected by the primary concentrators to the focal point or line. These components allow to increase the concentrated solar flux desity and hence to lower thermal radiation losses. Solar reflectors for secondary concentrators are permantently exposed to environmental conditions, high radiation fluxes and evelated temperatures that potentially cause stress and degradation throughout the time. Therefore, analyzing solar reflectors of secondary concentrators by simulating these conditions is curcial. No previous research works about the durabiity of solar reflector materials for secondary concentratos have been reported. The present work is focused on studying the degradation of the reflector materials by siumlating accelerated aging, caused by several ambient parameters and the effect of concentrated radiation.Both cooled and uncoooled systems for secondary concentrators are included in this study. According to results obtained, aluminum reflectors and thin silver-glass refelctros glued to an aluminum structure shoed minimum reflectance losses and structural degradation under the operation conditions of cooled 3D secondary concentrators (tower systems). Following critical aspects to avoid reflector degradation were identified: to select a suitable adhesive material to glue the thin silvered-glass reflector to the support aluminum structure, to properly protect reflectors edges, to design a suitable cooling system and to avoid the combination of high radiation fluxes with mechanical stress. In addition, laminated silvered-glass reflectors have shown to be suitable for uncooled 2D secondary concntrators (Fresnel collectors)- Furhtermore, a comparison with naturally aged secondary concentratros using silvered-glass reflectors glued to an aluminum structure revealed that the simulated degradation under accelerated conditions performed i´n this work did reproduce the most frequent degradation patterns suffered in real operating conditions.
机译:二次集中器用于太阳能集中系统,以将由初级集中器反射的太阳束重定向到焦点或线。这些部件允许增加浓缩的太阳能污水趋势,从而增加较低的热辐射损失。用于二次浓缩器的太阳能反射器允许在环境条件下暴露于环境条件,高辐射瓶和卓越的温度,这在众时可能引起应力和降解。因此,通过模拟这些条件来分析二次集中器的太阳能反射器是蠕动。报道了以前没有关于次要集中体的太阳能反射材料含量的研究。本作本作的重点是通过升高加速老化来研究反射器材料的降解,由若干周围参数和浓缩辐射的效果引起的。在本研究中包括次级浓缩器的冷却和未冷却系统的效果。根据所得的结果,铝反射器和薄的银玻璃重新粘合到铝结构鞋底的最小反射率损失和结构劣化在冷却的3D二次集中器(塔系统)的运行条件下。在避免反射器劣化的关键方面之后:选择合适的粘合剂材料以将薄的镀银玻璃反射器胶水粘合到支撑铝结构,以适当地保护反射器边缘,设计合适的冷却系统并避免高辐射的组合机械应力的助焊剂。此外,层压镀银 - 玻璃反射器已经显示为适用于未冷却的2D二级的联系人(菲涅耳收集器) - Furhtermore,与粘合到铝结构的镀银玻璃反射器的天然老化的二级Conceptros的比较显示,在加速条件下模拟降解执行我的工作确实重现了在实际操作条件下遭受的最常见的劣化模式。

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