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Integral energy performance characterization of semi-transparent photovoltaic elements for building integration under real operation conditions

机译:在实际运行条件下用于建筑物集成的半透明光伏元件的整体能量性能表征

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摘要

In this paper, a methodology for the integral energy performance characterization (thermal, daylighting and electrical behavior) of semi-transparent photovoltaic modules (STPV) under real operation conditions is presented. An outdoor testing facility to analyze simultaneously thermal, luminous and electrical performance of the devices has been designed, constructed and validated. The system, composed of three independent measurement subsystems, has been operated in Madrid with four prototypes of a-Si STPV modules, each one corresponding to a specific degree of transparency. The extensive experimental campaign, continued for a whole year rotating the modules under test, has validated the reliability of the testing facility under varying environmental conditions.ududThe thermal analyses show that both the solar protection and insulating properties of the laminated prototypes are lower than those achieved by a reference glazing whose characteristics are in accordance with the Spanish Technical Building Code. Daylighting analysis shows that STPV elements have an important lighting energy saving potential that could be exploited through their integration with strategies focused to reduce illuminance values in sunny conditions. Finally, the electrical tests show that the degree of transparency is not the most determining factor that affects the conversion efficiency.
机译:本文提出了一种在实际操作条件下对半透明光伏组件(STPV)进行整体能量性能表征(热,采光和电性能)的方法。已设计,构造和验证了用于同时分析设备的热,发光和电性能的室外测试设施。该系统由三个独立的测量子系统组成,已在马德里使用a-Si STPV模块的四个原型进行操作,每个原型都具有特定的透明度。广泛的实验活动持续了整整一年的时间,使测试中的模块旋转,从而验证了测试设备在各种环境条件下的可靠性。比那些参照特性符合《西班牙技术建筑规范》的参考玻璃实现的效果要好。采光分析表明,STPV元件具有重要的照明节能潜力,可以通过将其与专注于降低晴天条件下的照度值的策略集成来加以利用。最后,电学测试表明,透明度不是影响转换效率的最主要决定因素。

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