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Improving the Performance of Photovoltaic Power Plants with Determinative Module for the Cooling System

机译:用于冷却系统测定模块的光伏发电厂的性能

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The objective of this work is to analyze and evaluate the impact of cooling systems on photovoltaic modules (for electricity generation), applied at a pilot Testing Facility. The results obtained during this step are used as input in order to determine the best model to be applied at a real-scale Photovoltaic Power Plant (PVPP). This methodology is based on the monitoring and supervision of the operating temperature of commercial photovoltaic modules (PV), both with and without cooling systems, as well as on the study of the water supply design of the cooling system applied on a micro photovoltaic power plant which is connected to the commercial network. Through the analysis of the data, we observed that photovoltaic modules with cooling systems always operate at lower temperatures than the ones without cooling systems. During the testing period, the operating temperatures of the photovoltaic modules without cooling systems were above 60oC (with a maximum temperature equaling 68.06oC), whereas the maximum temperatures registered on the sensors of the model “A” were 43.55oC and 44.75oC, and the ones registered on the sensors of the model “B” were 46.76 and 48.33oC. Therefore, we conclude that the photovoltaic module with the cooling system model “A” is the most suitable for large-scale application, since it was the only model to present temperatures lower than the nominal operating condition temperature (NOCT) of the cell (47oC ± 2oC).
机译:这项工作的目的是分析和评估冷却系统对在试点测试设施的光伏模块(用于发电)上的影响。在该步骤期间获得的结果用作输入,以便确定在真正的光伏发电厂(PVPP)上应用的最佳模型。该方法是基于商业光伏模块(PV)的操作温度的监测和监控,无论是在微型光伏电站上施加的冷却系统的供水设计的研究它连接到商业网络。通过对数据的分析,我们观察到具有冷却系统的光伏模块总是在低温下操作而不是没有冷却系统的温度。在测试期间,光伏模块的无需冷却系统的光伏模块的操作温度高于60℃(具有68.06oC的最高温度),而在模型“A”的传感器上注册的最高温度为43.55℃和44.75oC,在模型“B”的传感器上注册的那些是46.76和48.33℃。因此,我们得出结论,具有冷却系统模型“A”的光伏模块是最适合的大规模应用,因为它是呈现低于电池的标称操作条件温度(47oC)的温度的唯一模型(47oC) ±2oc)。

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