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Investigation of a Hybrid Photovoltaic Thermal Heat Pump System

机译:混合光伏热泵系统的研究

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The decrease of photovoltaic (PV) cell temperature by 10 °C is expected to improve the PV electrical efficiency by 0.6-0.7% based on the reference efficiency of 15%. Different cooling liquids like air and water have been introduced to pass across the PVs to reduce the cell temperature, and thus increase the electrical efficiency. In this paper, the refrigerant R134a was used as the cooling liquid and a PV/thermal (PV/T) collector was coupled with a heat pump system acting as the evaporator, which was expected to achieve a better cooling effect and energy performance due to its low boiling temperature. A hybrid PV/T collector, made of 6 glass vacuum tube - PV module - aluminum sheet -cooper tube sandwiches connected in series, worked as the evaporator of the heat pump system. Numerical steady models were established for each component of the heat pump system and part of the PV/T collector/evaporator for predicting their energy performance under the weather data of January 14th at Tibet, China. The results showed that the maximum COP could reach up to 7.6. The daily average thermal efficiency and electrical efficiency were 0.764 and 0.104, respectively.
机译:基于15%的参考效率,预期光伏(PV)电池温度降低10°C将PV电效率提高0.6-0.7%。已经引入不同的冷却液,如空气和水,以通过PVS以降低电池温度,从而提高电效率。在本文中,使用制冷剂R134a用作冷却液,并且PV /热(PV / T)收集器与发挥作用作用作为蒸发器的热泵系统连接,这预期实现了更好的冷却效果和由于所引起的能量性能。其沸腾温度低。一种混合PV / T收集器,由6个玻璃真空管 - 光伏模块制成 - 铝板 - 铝板夹芯串联连接,用作热泵系统的蒸发器。为热泵系统的每个部件以及PV / T收集器/蒸发器的一部分建立了数值稳定模型,用于预测其在中国14月14日天气数据下的能量性能。结果表明,最大警察最高可达7.6。每日平均热效率和电效率分别为0.764和0.104。

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