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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal regulation of building-Integrated photovoltaics using phase change materials
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Thermal regulation of building-Integrated photovoltaics using phase change materials

机译:使用相变材料的建筑集成光伏的热调节

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摘要

Elevated operating temperatures reduce the efficiency of photovoltaic devices. The use of a phase change material to moderate building integrated photovoltaic temperature rise has been investigated by experiments and numerical simulations. Experimental data are used to validate the previously developed two-dimensional finite volume heat transfer model conjugated hydrodynamically to solve the Navier-Stokes and energy equations. A parametric study of a design application is also reported. Temperatures, velocity fields and vortex formation within the system were predicted for a variety of configurations using the experimentally validated numerical model. Temperature distributions predicted for different insolation and ambient temperatures at the photovoltaic surface show that the moderation of temperature achieved can lead to significant improvements in the operational efficiency of photovoltaic facades.
机译:升高的工作温度降低了光伏装置的效率。已经通过实验和数值模拟研究了使用相变材料来缓和建筑物的集成光伏温升。实验数据用于验证先前开发的二维有限体积传热模型,该模型以流体力学方式共轭以求解Navier-Stokes和能量方程。还报告了设计应用程序的参数研究。使用经过实验验证的数值模型,可以预测多种配置下系统内的温度,速度场和涡流形成。针对光伏表面不同日照和环境温度预测的温度分布表明,所达到的温度的适度可以导致光伏立面的工作效率的显着提高。

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