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Multilayer Thermal Model for Evaluating the Performances of Monofacial and Bifacial Photovoltaic Modules

机译:单层热模型评估单裂缝和双层光伏模块的性能

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摘要

This article aims to present a novel mono-dimensional multilayer mathematical model apt to estimate the temperature of photovoltaic (PV) cells for both monofacial and bifacial PV modules. A dynamic three-layer model (3L-NM) has been developed, in which the contribution of solar radiation that hits the back of the PV module is included. The model is constituted by energy balance equations, one for each layer of the PV module. The input data of the proposed model are the environmental weather conditions as well as the withdrawal electrical power. The outputs are the average temperature of each layer, so it is possible to determine the PV cell temperatures that typically cannot be directly measured. With the purpose to investigate the reliability of the proposed model, the numerical results have been compared with experimental data. Finally, a sensitivity analysis has been performed to evaluate the impact of solar radiation in the back of the PV module considering the different wind speed, as well as the operating electrical points (open circuit and maximum power point). From the statistical analysis, correlation values of 0.993 and 0.990 were obtained, PE values equal to 0.718% and 0.161%, respectively, for the monofacial and bifacial module. The sensitivity study shows that the solar radiation on the backside of the module has a greater impact on the bifacial module, infact, when the contribution of back is included in a model, temperature differences up to 5.2 degrees C for bifacial and 1.0 degrees C for monofacial module at 1000 W/m(2) were observed.
机译:本文旨在提出一种新型单尺寸多层数学模型,以估计用于单裂纹和双脉冲光伏模块的光伏(PV)细胞的温度。已经开发了动态三层模型(3L-NM),其中包括击中光伏模块背面的太阳辐射的贡献。该模型由能量平衡方程构成,一个用于PV模块的每层。所提出的模型的输入数据是环境天气条件以及提取电力。输出是每层的平均温度,因此可以确定通常不能直接测量的光伏电池温度。目的是研究所提出的模型的可靠性,将数值结果与实验数据进行了比较。最后,已经进行了敏感性分析,以评估考虑不同风速的光伏模块背面的太阳辐射的影响,以及操作电点(开路和最大功率点)。从统计分析,获得0.993和0.990的相关值,PE值分别等于单面和双层模块的0.718%和0.161%。灵敏度研究表明,模块背面的太阳辐射对双因素模块产生了更大的影响,当背面的贡献包括在模型中,对于双环和1.0度C的温度差异高达5.2℃观察到1000W / m(2)的单裂缝模块。

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