Validated simulation for thermal regulation of photovoltaic wall structures

Hongxing Yang, R. H. Marshall, B. Brinkworth
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引用次数: 44

Abstract

A simulation model for PV wall structures is developed so that its thermal and electrical behaviour can be analysed and predicted. The air flow in the air duct behind the PV modules, and the heat transfer through the backing structure can also be calculated. The numerical solution of the governing equations for the air flow in the air duct yield the air velocity and temperature distributions along the air duct. An air duct with lower height and deeper depth can achieve a better performance of ventilation effect for PV modules. An indoor PV wall test rig was built for validation of the simulation model. With a well designed ventilated PV wall structure, the PV cell temperature can be reduced by 15/spl deg/C and the PV module power output can be increased by 8.0% compared with nonventilation PV wall structures. The simulation model predicts well the air flow behaviour inside the air duct.
光伏墙体结构热调节的仿真验证
建立了光伏墙结构的仿真模型,对其热学和电学行为进行了分析和预测。还可以计算光伏组件后风道内的气流,以及通过背衬结构的换热。通过对风道内气流控制方程的数值求解,得到了风道内气流的速度和温度分布。风管高度越低、深度越深,光伏组件的通风效果表现越好。为了验证仿真模型的有效性,搭建了室内光伏墙体试验台。与不通风的光伏壁结构相比,设计良好的通风光伏壁结构可使光伏电池温度降低15/spl℃,光伏组件输出功率提高8.0%。仿真模型较好地预测了风道内的气流特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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