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Modeling and comparative analysis of jet impingement cooling and conventional channel cooling for photovoltaic strings

机译:光伏串的射流冲击冷却和常规通道冷却的建模和比较分析

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A cooling technique for photovoltaic (PV) string based on jet impingement device is proposed in this study to eliminate non-uniform cooling across the surface of the PV panel. Non- uniformity on the PV panel arises due to the uneven solar flux distribution and temperature variations across the cell. This study identifies water jet impingement cooling as a promising solution to provide uniform cooling of PV panels for the climatic data of Middle Eastern region. The complete cooling model incorporates optical, radiation, thermal, electrical and jet cooling model for the overall performance analysis of the PV system. Jet impingement cooling model for PV string is developed in this paper to carry out the heat transfer analysis for single and multiple jet nozzles to predict the cell temperature, power output and conversion efficiency of PV strings. Detailed thermal model based on energy balance approach is also developed to assess the effect of cell temperature on the PV string using average heat transfer correlations. Finally, a comparative analysis is carried out for rectangular channel heat exchanger and jet cooling of PV strings subjected to the conditions of Dhahran. The results reveal that the jet cooling has higher efficiency, minimum cell temperature and temperature uniformity.
机译:本研究提出了一种基于射流冲击装置的光伏串冷却技术,以消除整个光伏面板表面的不均匀冷却。由于不均匀的太阳能通量分布和整个电池单元的温度变化,导致PV面板上出现不均匀现象。这项研究确定了水射流冲击冷却是一种有前途的解决方案,可以为中东地区的气候数据提供对PV面板的均匀冷却。完整的冷却模型结合了光学,辐射,热,电和喷射冷却模型,可对光伏系统进行整体性能分析。本文建立了光伏串的射流冲击冷却模型,对单喷嘴和多喷嘴进行传热分析,以预测光伏电池的电池温度,功率输出和转换效率。还开发了基于能量平衡方法的详细热模型,以使用平均热传递相关性评估电池温度对PV串的影响。最后,对在达兰条件下的矩形通道换热器和光伏串的射流冷却进行了比较分析。结果表明,射流冷却具有更高的效率,最低的电池温度和温度均匀性。

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