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Annual performance of photovoltaic-thermal system under actual operating condition of Dire Dawa in Ethiopia

机译:埃塞俄比亚Dire Dawa实际运行条件下光伏热力系统的年度性能

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As cooling of Photovoltaic panel by water improves the electrical conversion efficiency and produces warm water as a by-product, photovoltaic thermal system is being used for cogeneration of electrical energy and hot water. In this study, the annual performance of a glazed photovoltaic thermal system (combination of PV module and solar flat plate collector) with storage tank was investigated by the dynamic computational model. The model was developed using MATLAB under actual hot water demand condition for co-generation electrical energy at Dire Dawa in Ethiopia. The computational model determines the electrical energy production and temperature of water at different points and other components of the PV-T system within a given time interval. In addition summaries of monthly and annual incident solar irradiance, electrical energy generation, thermal energy transported to storage and thermal energy supplied as hot water to end users are computed, considering the hourly hot water consumption pattern and storage size effect. The simulation, which is conducted for 20 msup2/sup PV-T system, consists of 12 panels with each 1.64 msup2/sup module areas resulted in generation 803 kWh/year thermal energy and 310 kWh/year electrical energy. The annual average electrical efficiency, thermal efficiency, hot water end use overall efficiency and co-generation (PV-T) efficiency of the system were 15.4%, 50.4%, 38%, and 65.8% respectively. The fraction of solar energy in meeting the heating load for hot water generation was 44.5% for 60℃ hot water supply temperature. Hence, that PV-T system can only be used for water preheating meeting at maximum half of the heating load in tropical area.
机译:随着水对光伏面板的冷却提高了电转换效率并产生了副产品温水,光伏热系统正被用于电能和热水的热电联产。在这项研究中,通过动态计算模型研究了带玻璃的光伏热力系统(光伏组件和太阳能平板集热器的组合)与储罐的年度性能。该模型是使用MATLAB在埃塞俄比亚Dire Dawa的实际热水需求条件下为热电联产而开发的。该计算模型确定给定时间间隔内PV-T系统不同点和其他组件的水的电能产生和温度。此外,还考虑了每小时的热水消耗模式和存储规模效应,计算了每月和每年的太阳辐照度,电能产生,运输到存储的热能以及作为热水供应给最终用户的热能的摘要。针对20 m 2 PV-T系统进行的仿真由12个面板组成,每个面板面积为1.64 m 2 ,每年产生803 kWh热能,每年310千瓦时的电能。系统的年平均电效率,热效率,热水最终用户整体效率和热电联产(PV-T)效率分别为15.4%,50.4%,38%和65.8%。在60℃的热水供应温度下,满足热水供暖负荷的太阳能比例为44.5%。因此,该PV-T系统只能用于满足热带地区最大热负荷一半的水预热。

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