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Dynamic thermal model of solar PV systems under varying climatic conditions

机译:不同气候条件下太阳能光伏系统的动态热模型

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The operating temperature of photovoltaic (PV) modules plays a central role in the photovoltaic energy conversion process, because the output voltage and, thereby, the produced output power decreases with increasing module temperature. The thermal response of PV modules is dynamic to changes in the climatic conditions affecting to the module. Therefore, a steady state model of module temperature cannot be justified. This paper presents a dynamic thermal model based on the total energy balance in the PV module. Main heat transfer mechanisms between the module and its environment have been modelled theoretical. The model is verified by the measurements data of the TUT solar photovoltaic power station research plant, which contains an accurate weather station, solar radiation measurements and a mesh of irradiance and module temperature measurements. A systematic sensitivity analysis of site-specific parameters was carried out to fine-tune the dynamic thermal model. The model was validated using time series of l-s measurements data of three summer months and was found to differ less than 2℃ from the measured module temperatures 80% of the time.
机译:光伏(PV)模块的工作温度在光伏​​能量转换过程中起着核心作用,因为随着模块温度的升高,输出电压以及由此产生的输出功率会降低。光伏组件的热响应随气候条件的变化而动态变化,从而影响组件。因此,无法证明模块温度的稳态模型。本文介绍了基于光伏模块中总能量平衡的动态热模型。模块与环境之间的主要传热机制已在理论上建模。 TUT太阳能光伏电站研究工厂的测量数据验证了该模型,该数据包含准确的气象站,太阳辐射测量值以及辐照度和模块温度测量值的网格。对现场特定参数进行了系统的灵敏度分析,以微调动态热模型。使用三个夏季月份的ls测量数据的时间序列对模型进行了验证,发现该模型与被测模块温度在80%的时间内相差不到2℃。

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