首页> 外文会议>International Congress on Solar Energy Research, Technology and Applications >Numerical Investigation of a Solar PVT Air Collector Used for Preheating the Ventilating Air in Tertiary Building Under the Climatic Conditions of Fez, Morocco
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Numerical Investigation of a Solar PVT Air Collector Used for Preheating the Ventilating Air in Tertiary Building Under the Climatic Conditions of Fez, Morocco

机译:用于在摩洛哥菲茨气候条件下将通风空气预热空气的太阳能PVT空气收集器的数值研究

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This work deals with the study of the thermal and electrical inflows of a photovoltaic/ thermal air collector (PVT). This system is used to preheat the fresh air entering a tertiary building of an area of 300 m~2 and to supply electricity to the fans to ensure the required airflow. A numerical model based on the balance energy equations is used to evaluate the hourly variation of PV cell temperature, outlet air temperature, electrical cell efficiency, thermal efficiency, useful thermal heat gain and useful electrical gain. The saved thermal and electrical energies are then evaluated. The results show that a PVT air collector with a fixed total area of A_(tot)=13 m~2 and an airflow rate of m_a=0.25 kg/s, can involve a thermal energy saving equal to 38.3% of the total energy requested to preheat the incoming air to the considered building. This represents an annual thermal energy saving of 3148.36 kWh. In addition, the electrical efficiency is enhanced by 2%, which leads to an annual electrical energy saving of 73.77 kWh.
机译:这项工作涉及光伏/热空气收集器(PVT)的热量和电流量的研究。该系统用于预热新鲜空气进入300 m〜2的三级建筑物,并为风扇提供电力以确保所需的气流。基于平衡能量方程的数值模型用于评估光伏电池温度,出口空气温度,电池效率,热效率,有用的热量增益和有用的电增益的每小时变化。然后评估保存的热和电能。结果表明,具有固定总面积A_(TOT)= 13m〜2的PVT空气收集器和M_A = 0.25千克/秒的气流速率,可以涉及热能节省等于所要求的总能量的38.3%将进入的空气预热到被审议的建筑物。这代表年度热节能为3148.36千瓦时。此外,电效率增强了2%,导致年度电能节省73.77千瓦时。

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