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Modeling a Passive Cooling System for Photovoltaic Cells under Concentration

机译:集中光伏电池的被动冷却系统建模

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Cooling of photovoltaic cells under high intensity solar irradiance is a major concern when designing concentrating photovoltaic systems. The cell temperature will increase if the waste heat is not removed and the cell voltage/power will decrease with increasing cell temperature. This paper presents an analysis of the passive cooling system on the Amonix high concentration photovoltaic system (HCPV). The concentrator geometry is described. A model of the HCPV passive cooling system was made using Gambit. Assumptions are discussed that were made to create the numerical model based on the actual system, the methods for drawing the model is discussed, and images of the model are shown. Fluent was used to compute the numerical results. In addition to the theoretical results that were computed, measurements were made on a system in the field. These data are compared to the theoretical data and differences are calculated. Theoretical conditions that were studied included uniform cell temperatures and worst case weather scenarios, i.e., no wind, high ambient conditions, and high solar irradiance. The performance of the Amonix high concentrating system could be improved if more waste heat were removed from the cell. Now that a theoretical model has been developed and verified, it will be used to investigate different designs and material for increasing the cooling of the system.
机译:在设计聚光光伏系统时,在高强度太阳辐射下冷却光伏电池是一个主要问题。如果不除去废热,电池温度将升高,并且电池电压/功率将随着电池温度的升高而降低。本文介绍了对Amonix高浓度光伏系统(HCPV)上的被动冷却系统的分析。描述了集中器的几何形状。使用Gambit制作了HCPV被动冷却系统的模型。讨论了基于实际系统创建数值模型的假设,讨论了绘制模型的方法,并显示了模型的图像。使用Fluent来计算数值结果。除了计算出的理论结果外,还对现场系统进行了测量。将这些数据与理论数据进行比较,并计算出差异。研究的理论条件包括均匀的电池温度和最坏情况的天气情况,即无风,高环境条件和高太阳辐照度。如果从电解池中除去更多的废热,则可以提高Amonix高浓缩系统的性能。现在已经开发并验证了理论模型,它将用于研究不同的设计和材料以增加系统的冷却。

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