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Experimental and numerical study of a PV/Thermal collector equipped with a PV-assisted air circulation system: Configuration suitable for building integration

机译:配备光伏辅助空气循环系统的光伏/集热器的实验和数值研究:适合建筑物集成的配置

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In this paper, the energy performance of a photovoltaic/thermal collector equipped with a direct PV air circulation device is studied experimentally and numerically. In this system, the air circulation through the collector duct is ensured by a low input power DC fan that is directly connected to a PV module of small power capacity. In fact, depending on which period of the year the PV/thermal collector is being employed, a 4Wp or 12 Wp PV panel is used to supply the electrical power to run the DC fan respectively for cold/winter or hot/summer periods. Therefore, the air flow rate under which the present hybrid collector operates is variable and highly affected by the incident solar radiation intensity. A theoretical model for the present hybrid system, in which air flow rate is introduced as a simple empirical correlation relating flow rate to solar radiation, was developed and obtained numerical results have been validated by experimental ones. Simulation and experimental results have been found in reasonably good agreement in terms of PV cell temperature, outlet air temperature, and electric PV peak power. Moreover, the obtained results revealed that low flow rate PV-assisted air circulation systems, if properly sized, would be very attractive for cold periods and winter conditions because of the high air temperature difference they could produce which is a key parameter for space heating applications. On the other hand, the high flow rate system seems to be very suitable for summer conditions where priority is given for the ventilation of PV modules to lower their cells temperature. The suggested PV/T collector design offers the advantage to be self-energy dependent and seems to have a great potential in remote areas. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,通过实验和数值研究了装有直接PV空气循环装置的光伏/集热器的能量性能。在此系统中,通过低输入功率直流风扇确保了通过集管的空气循环,该风扇直接连接到小功率的PV模块。实际上,根据使用一年中哪个时段的PV /集热器,可以使用4Wp或12 Wp的PV面板来提供电力,以分别在冷/冬或热/夏期间运行DC风扇。因此,本混合收集器工作的空气流速是可变的,并且受入射太阳辐射强度的很大影响。建立了当前混合系统的理论模型,在该模型中引入了空气流速作为将流速与太阳辐射相关的简单经验关系式,并通过实验验证了所得数值结果。在光伏电池温度,出口空气温度和电PV峰值功率方面,已经找到了相当不错的仿真和实验结果。此外,获得的结果表明,低流量的PV辅助空气循环系统,如果尺寸合适,则由于可能产生高的空气温差,因此对于寒冷时期和冬季条件非常有吸引力,这是空间供暖应用的关键参数。另一方面,高流量系统似乎非常适合夏季条件,在这些条件下,优先考虑对PV模块进行通风以降低其电池温度。建议的PV / T集热器设计具有依赖于自能量的优点,并且在偏远地区似乎具有很大的潜力。 (C)2019 Elsevier B.V.保留所有权利。

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