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Influence of cooling water flow rate and temperature on the photovoltaic panel power

机译:冷却水流量的影响温度对光伏面板的力量

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The photovoltaic panel cooled by a water flowing is commonly used in the study of solar cell to generate the electrical and thermal power outputs of the photovoltaic module. A practical method is therefore required for predicting the distributions of temperature and photovoltaic panel powers over time. In this study, the second-degree polynomial models were established to predict the distributions of temperature and various photovoltaic panel powers, while the linear models were used to analyse the correlation between solar power input and various photo-voltaic panel powers. The results showed that the maximum values of electrical power, thermal power and power loss reached at the temperature around noontime. The same value of a photovoltaic panel power recorded at two temperatures was verified from the experiment of photovoltaic panel cooled with different cooling water flow rates. A volumetric flow rate of cooling water passing through the copper tubes determines the amount and characteristics of additional electrical power generated by the water-cooled photovoltaic panel, while a power loss in the photovoltaic panel is very sensitive to the rate of water flow. This study provides a new insight into the management of solar energy for the residential and commercial purposes in the future.
机译:光伏板冷却水流研究中常用的太阳能电池产生电和热功率输出的光伏模块。因此需要预测温度分布和光伏随着时间的推移面板的权力。建立了二次多项式模型预测温度的分布各种光伏面板的权力,而线性模型被用来分析之间的相关性和各种太阳能输入光伏面板的权力。电力的最大值,热功率和功率损失达成的温度在中午。在两个记录光伏面板电源温度的实验验证光伏板与不同的冷却降温水流速。冷却水经过铜管道确定的数量和特征额外产生的电力水冷式光伏面板,而权力损失在光伏面板是非常敏感的水流的速度。新的见解太阳能的管理的住宅和商业用途未来。

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