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Experimental and numerical investigation on thermal and electrical performance of a building integrated photovoltaic-thermal collector system

机译:建筑物集成式光伏热集热系统热电性能的实验和数值研究

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摘要

An experimentally validated computational fluid dynamics (CFD) model of a novel building integrated photovoltaic-thermal (BIPV/T) collector is studied to determine the effect of active heat recovery on cell efficiency and to determine the effectiveness of the device as a solar hot water heater. Parametric analysis indicates that cell efficiency can be raised by 5.3% and that water temperatures suitable for domestic hot water use are possible. Thermal and combined (thermal plus electrical) efficiencies reach 19% and 34.9%, respectively. A new correlation is developed relating electrical efficiency to collector inlet water temperature, ambient air temperature and insolation that allows cell efficiency to be calculated directly.
机译:研究了新型建筑集成光伏-热能(BIPV / T)收集器的经实验验证的计算流体动力学(CFD)模型,以确定主动热回收对电池效率的影响并确定该设备作为太阳能热水的有效性加热器。参数分析表明,电池效率可以提高5.3%,并且适合家用热水的水温是可能的。热效率和组合(热加电)效率分别达到19%和34.9%。开发了一种新的相关性,将电效率与收集器的进水温度,周围空气温度和日照相关,可以直接计算电池效率。

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