Applied thermal engineering2022,Vol.20814.DOI:10.1016/j.applthermaleng.2022.118222

Three-dimensional heat transfer studies of glazed and unglazed Photovoltaic/Thermal systems embedded with phase change materials

El-Hamid, Abd Wei, Gaosheng Cui, Liu Xu, Chao Du, Xiaoze
Applied thermal engineering2022,Vol.20814.DOI:10.1016/j.applthermaleng.2022.118222

Three-dimensional heat transfer studies of glazed and unglazed Photovoltaic/Thermal systems embedded with phase change materials

El-Hamid, Abd 1Wei, Gaosheng 1Cui, Liu 1Xu, Chao 1Du, Xiaoze1
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作者信息

  • 1. North China Elect Power Univ
  • 折叠

Abstract

In this study, a three-dimensional numerical simulation is carried out to implement a comparative analysis between the glazed and unglazed photovoltaic/thermal (PV/T) integrated structures incorporated without or with phase change materials (PCMs) at distinct locations using water as a coolant. Accordingly, six glazed and unglazed PV/T or PV/T-PCM configurations are designed through burying the water pipes within the PCM and positioning an additional PCM layer with different melting temperature from the upper one. The performance of the proposed layouts is evaluated and compared from the energy and exergy points of view. The effect of coolant flow rate is also evaluated in both the laminar and turbulent regions along with assessing the environmental impact of the proposed modules to analyze the daily CO2 reduction. The results show that burying the water pipes inside the PCM beneath the PV/T module yields a significant improvement of the overall performance. Also, the electrical energy generated from unglazed modules is somewhat higher than that generated from the glazed modules, however the daily thermal energy output for the glazed modules is marginally higher than that generated from unglazed layouts having the same layer arrangement. Among the proposed structures, the glazed and unglazed PV/T modules integrated with dual PCMs achieve the highest daily average energetic and exergetic efficiencies, respectively.

Key words

Photovoltaic/thermal system/Phase change materials/Energy and exergy analysis/Dual PCMs/Efficiency/PERFORMANCE ANALYSIS/PVT SYSTEM/THERMAL COLLECTOR/ENERGY/EXERGY/MODULE/TEMPERATURE/EFFICIENCY/PANEL/NANOFLUIDS

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量9
参考文献量48
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