PCM冷却系统下PV太阳能电池的温度调节

Assia Sellami, R. Elotmani, K. Kandoussi, M. Eljouad, A. Hajjaji, M. Boutaous
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引用次数: 1

摘要

目前,相变材料(PCM)已被集成到光伏板的冷却系统中。相变材料(PCM)在该领域的应用有许多原因(安全、丰富、经济…)。PCM在提高光伏电池效率方面发挥着重要的作用。本文描述了一个详细的物理问题,以了解PCM在保持PV电池温度接近环境中的作用。本文采用两种不同的方法对PCM域中的传热进行建模,研究PCM对PV系统温度演化的影响。通过对两种方法的比较,我们发现由于相变和自由对流,瞬态不可压缩流动被考虑来解释速度剖面的动态变化。此外,在一定标准的光伏板两侧辐照和热流条件下,利用能量方程对熔体锋进行了跟踪,为相变过程中的温度演变提供了良好的理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature regulation of PV solar cell under PCM cooling system
Today, phase change material (PCM) are integrated to cooling system of photovoltaic panels. There are many reasons (safe, abundant, affordable…) to use phase change material (PCM) in this field. The PCM may play an important role in increasing efficiency of PV cells. This paper describes a detailed physical issue in order to understand the effect of PCM in keeping PV cell temperature close to ambient. The study is focused on modeling the heat transfer in a PCM domain by using two different methods in the aim to study the PCM effect on temperature evolution of the PV system. By comparing between the two methods studied, we found that due to a phase change and free convection, transient incompressible flow is taken into account to explain the dynamic variations of the velocity profile. Moreover, with some standard conditions of irradiation and heat flux on both sides of PV panel, a melt front has been tracked by the energy equation in which gives a good argument for the temperature evolution during phase change.
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