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Energy and Exergy Efficiency of Flat Plate PVT Collector With Forced Convection

机译:强制对流平板PVT集热器的能量和火用效率

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This article presented the detailed energy and exergy analysis performed on 4 different configurations of solar photovoltaic thermal collectors under Chennai climatic conditions. A comparative performance study of all the four different configurations was performed considering two mass flow rates of air as 0.00847 and 0.01130 kg/s. The parameters such as PV temperature, inlet and outlet air flow temperatures in the cooling channels, solar radiation, and ambient temperature were analyzed and studied in detail. It was found that the collector performance enhanced with increase in air velocity with further increase in heat transfer coefficient between the absorber surface and air. The experimental results obtained from the present work and the experimental performances of previously published results are found to be in good agreement. The electrical efficiency was from 9.8 to 12.9 % for 0.00847 kg/s and from 10.3 to 13.9 % for mass flow rate of air 0.0113 kg/s. The maximum thermal efficiency lies between 4.3 and 12.4 % for the mass flow rate of air 0.00847 kg/s and from 6.5 to 15.9 % for mass flow rate of air 0.01130 kg/s, respectively. Similarly, the maximum exergy efficiency ranges from 11.2 to 38.6 % for mass flow rate of air 0.00847 kg/s, and it varies between 18.4 and 49.4 % for mass flow rate of air 0.01130 kg/s.
机译:本文介绍了在钦奈气候条件下,对4种不同配置的太阳能光伏集热器进行的详细能量和火用分析。考虑到两种空气质量流量分别为0.00847和0.01130 kg / s,进行了所有四种不同配置的比较性能研究。分析并详细研究了诸如PV温度,冷却通道中的进出口气流温度,太阳辐射和环境温度等参数。已经发现,随着空气速度的增加,吸收器表面与空气之间的传热系数进一步增加,集热器的性能得以提高。从目前的工作获得的实验结果和以前发表的结果的实验​​性能被发现是很好的一致。对于0.00847kg / s,电效率为9.8-12.9%,对于空气的质量流量为0.0113kg / s,电效率为10.3-13.9%。对于0.00847 kg / s的空气质量流量,最大热效率分别在4.3和12.4%之间,对于0.01130 kg / s的空气质量流量,最大热效率分别在6.5和15.9%之间。类似地,对于0.00847 kg / s的空气质量流量,最大火用效率在11.2%至38.6%的范围内,而对于0.01130 kg / s的空气质量流量,其最大火用效率在18.4%和49.4%之间变化。

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