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Feasibility study of the winter heating about solar - water source heat pump system in hot summer and cold winter zone

机译:炎热夏季寒冷冬区太阳能热泵系统冬季加热的可行性研究

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Solar water-heat pump can greatly improve the comprehensive utilization efficiency of energy, it solves some problems that the heating performance is going down and often gets into protection mode of water source heat pump in winter long-running. Because of different solar radiation in different places, we should study more previous researches about this system before deciding to apply it. This paper took the simulation study in Changsha area chose the representation of hot summer and cold winter zone and adduced renewable energy construction project evaluation criteria method. The results showed that the solar energy can let the evaporator inlet water temperature to 22°C, so the unit COP increase 10.31% more than the evaporator inlet water temperature is 8°C and solar contribution rate(the percentage coefficient that describe the importance of solar energy contributing to water temperature rise in evaporator ) is 1.97%, in this time, the energy efficiency is optimal. The system having high energy efficiency can utilize discrete solar energy in heating, cooling and provide living hot water, so it has a good future in hot summer and cold winter zone.
机译:太阳能热水热泵可以大大提高能源的综合利用效率,它解决了一些问题,加热性能下降,经常进入水源热泵的保护模式在冬季长时间运行。因为在不同的地方不同的太阳辐射,我们在决定申请前研究有关该系统的更多前人研究成果。本文采取了模拟研究长沙地区选择了夏热冬冷地区和引证可再生能源建设项目的评价标准方法的代表性。的结果表明,太阳能可以让蒸发器入口的水的温度至22℃,使该单元COP增加比蒸发器入口水温10.31%以上是8°C和太阳能贡献率(百分比系数描述的重要性在蒸发器的水温上升)太阳能贡献是1.97%,在该时间,能量效率是最佳的。该系统具有高的能量效率可以在加热利用离散的太阳能,冷却和提供生活热水,因此它具有良好的未来在炎热的夏季和冬冷地区。

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