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A thermal model for amorphous silicon photovoltaic integrated in ETFE cushion roofs

机译:集成在ETFE气垫屋面中的非晶硅光伏热模型

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Temperature characteristics of amorphous silicon photovoltaic (a-Si PV) integrated in building roofs (e.g. the ETFE cushions) are indispensible for evaluating the thermal performances of a-Si PV and buildings. To investigate the temperature characteristics and temperature value, field experiments and numerical modeling were performed and compared in this paper. An experimental mock-up composed of a-Si PV and a three-layer ETFE cushion structure was constructed and experiments were carried out under four typical weather conditions (winter sunny, winter cloudy, summer sunny and summer cloudy). The measured solar irradiance and air temperature were used as the real weather conditions for the thermal model. On the other side, a theoretical thermal model was developed based on energy balance equation which was expressed as that absorbed energy was equal to converted energy and energy loss. The corresponding differential equation of PV temperature varying with weather conditions was solved by the Runge-Kutta method.
机译:集成在建筑物屋顶(例如ETFE垫子)中的非晶硅光伏(a-Si PV)的温度特性对于评估a-Si PV和建筑物的热性能是必不可少的。为了研究温度特性和温度值,本文进行了现场试验和数值模拟并进行了比较。构建了由a-Si PV和三层ETFE缓冲结构组成的实验模型,并在四种典型的天气条件(冬季晴天,冬季多云,夏季晴天和夏季多云)下进行了实验。测得的太阳辐照度和气温被用作热模型的真实天气条件。另一方面,基于能量平衡方程建立了理论热模型,该模型表示为吸收的能量等于转换后的能量和能量损失。用Runge-Kutta方法求解了相应的光伏温度随天气变化的微分方程。

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