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首页> 外文期刊>Elektronika ir Elektrotechnika >A Transient Thermal Model for Flat-Plate Photovoltaic Systems and Its Experimental Validation
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A Transient Thermal Model for Flat-Plate Photovoltaic Systems and Its Experimental Validation

机译:平板光伏系统瞬态热模型及其实验验证

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摘要

This paper describes a transient thermal model that accurately predicts the temperature of the open-rack mounted photovoltaic (PV) modules under varying atmospheric conditions. The PV module temperature is predicted by considering the thermal energy exchange between the PV module and its environment through the main heat transfer paths. The proposed thermal model has been validated by utilising data from the experiment: the temperature measurement of two identical PV modules operating in two different modes (open-circuit and full-load) was performed by means of three temperature sensors placed on the back surface of both PV modules. The model accuracy is 3 degrees C of measured temperature values 100 % of the time under all conditions. The highest accuracy is obtained when the solar irradiance is subject to less fluctuation. The influence of the load level relative to the nominal power of the PV module on its temperature is hereby subject to consideration.
机译:本文介绍了一种瞬态热模型,可准确地预测变化大气条件下的开放式安装光伏(PV)模块的温度。 通过考虑通过主传热路径的光伏模块及其环境之间的热能交换来预测光伏模块温度。 通过利用来自实验的数据验证了所提出的热模型:通过将三个温度传感器放置在后表面上的三个温度传感器进行两种不同模式(开路和全负载)的两个相同的PV模块的温度测量。 两个光伏模块。 模型精度为在所有条件下100%的测量温度值的3摄氏度。 当太阳辐照度受到较小波动时,获得最高精度。 由此,负载水平相对于PV模块的标称功率对其温度的影响在此考虑。

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