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Flow and heat transfer in the air gap behind photovoltaic panels

机译:光伏板背后气隙中的流动和热传递

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摘要

The impetus of this paper is to analyse numerically and experimentally the flow and heat transfer characteristics of buoyancy-driven air convection behind photovoltaic panels. Both convection and radiation heat exchanges are considered as the heat transfer mechanisms by which the thermal energy is transferred into the air. Numerical and experimental results are obtained for a channel of 7.0 m in height and the channel walls are separated by a distance of 0.23 m. In the experiment heat is supplied to the air gap from heating foil attached to one of the vertical walls. Different input heat fluxes and emissivity of the bounding surfaces are considered in order to show their effect on the heat transfer across the air layer.
机译:本文的动力是对光伏面板背后的浮力驱动空气对流的流动和传热特性进行数值和实验分析。对流和辐射热交换均被视为热传递机制,通过该热传递机制将热能传递到空气中。对于高度为7.0 m的通道获得了数值和实验结果,通道壁之间的距离为0.23 m。在实验中,热量从附着在垂直壁之一上的加热箔片供应到气隙。考虑不同的输入热通量和边界表面的发射率,以显示它们对穿过空气层的热传递的影响。

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