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Study on thermal performance of semi-transparent building-integrated photovoltaic glazings

机译:半透明建筑集成光伏玻璃的热性能研究

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摘要

This paper presents a one-dimensional transient heat transfer model, the Semi-transparent Photovoltaic module Heat Gain (SPVHG) model, for evaluating the heat gain of semi-transparent photovoltaic modules for building-integrated applications. The energy that is transmitted, absorbed and reflected in each element of the building-integrated photovoltaic (BIPV) modules such as solar cells and glass layers were considered in detail in the SPVHG model. Solar radiation model for inclined surface has been incorporated into the SPVHG model. The model is applicable to photovoltaic (PV) modules that have different orientations and inclinations. The annual total heat gain was evaluated by using the SPVHG model. The impacts of different parameters of the PV module were investigated. It was found that solar heat gain is the major component of the total heat gain. The area of solar cell in the PV module has significant effect on the total heat gain. However, the solar cell energy efficiency and the PV module's thickness have only a little influence on the total heat gain. The model was also validated by laboratory tests by using a calorimeter box apparatus and an adjustable solar simulator. The test results showed that the simulation model predicts the actual situation well.
机译:本文提出了一种一维瞬态传热模型,即半透明光伏组件热增益(SPVHG)模型,用于评估建筑集成应用中的半透明光伏组件的热增益。在SPVHG模型中详细考虑了在建筑物集成光伏(BIPV)模块的每个元素(例如太阳能电池和玻璃层)中传输,吸收和反射的能量。 SPVHG模型已合并了倾斜表面的太阳辐射模型。该模型适用于具有不同方向和倾斜度的光伏(PV)模块。通过使用SPVHG模型评估了年度总热量增加。研究了光伏组件不同参数的影响。已经发现,太阳热量获取是总热量获取的主要组成部分。光伏模块中太阳能电池的面积对总热量获取有重要影响。但是,太阳能电池的能效和PV组件的厚度对总的热增益影响很小。该模型还通过使用热量计盒设备和可调式太阳能模拟器的实验室测试进行了验证。测试结果表明,该仿真模型能够较好地预测实际情况。

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