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Modelling Results of Covered PVT Collectors regarding Low-E Coatings and F’

机译:关于低辐射涂层和F’的PVT收集器的建模结果

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Photovoltaic-thermal (PVT) collectors are hybrid collectors which make, in principle, optimal use of thernsolar resource by co-generating electricity and heat in a single module. The development of innovative PVTrnconcepts is based on a deep understanding of the interplay between design and materials, performancerncoefficients, and finally the thermal and electrical energy yield. Amongst others, the energy yield isrninfluenced by the low emissivity (Low-E) coating, thermal insulation, and the thermal coupling of absorberrnand fluid characterized by the collector efficiency factor F’. In this paper, a modelling approach is presentedrnwhich describes the interplay between optical properties of Low-E coatings, overall heat losses and F’. Inrnanalyzing seven different Low-E coatings, the complex interdependence of these three factors becomes clear.rnA further highlight will be put on the thermal coupling of the fluid to the absorber and its influence on F’. Inrnaddition, system simulations for a combi system are carried out to analyze the annual electricity and thermalrnyields.
机译:光伏热(PVT)收集器是混合式收集器,原则上通过在单个模块中共同产生电和热来最佳利用太阳能资源。创新性PVTrnconcepts的开发基于对设计和材料,性能系数以及热和电能产量之间相互作用的深刻理解。其中,低发射率(Low-E)涂层,热绝缘以及以集热效率系数F'为特征的吸收体与流体的热耦合会影响能量的产生。在本文中,提出了一种建模方法,该方法描述了Low-E涂层的光学性能,总体热损失和F'之间的相互作用。对7种不同的Low-E涂层进行了分析,这三个因素之间的复杂相互依存关系变得清晰起来。rn将进一步强调流体与吸收器的热耦合及其对F'的影响。此外,对组合系统进行了系统仿真,以分析年发电量和热效率。

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