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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation on the hot gas bypass defrosting in air source transcritical CO2 heat pump water heater
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Experimental investigation on the hot gas bypass defrosting in air source transcritical CO2 heat pump water heater

机译:空气源跨临界CO2热泵热水器热气旁路除霜的实验研究

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摘要

The transcritical CO2 heat pump is widely used due to its higher efficiency. Frost is inevitable at low ambient temperature, resulting in a deteriorated coefficient of performance and heating capacity. Considering the disadvantages and limitations of other defrosting methods, the hot gas bypass defrosting method was experimentally investigated in this paper. The dynamic characteristics of pressure and temperature during the defrosting process are studied in detail and the pressure-enthalpy diagrams are depicted. In addition, energy analysis of the heat supply and energy consumption is presented to evaluate the defrosting efficiency. Furthermore, the influence of ambient temperature is also discussed. The results show that the measured parameters change gradually during the defrosting process except for the initial stage and defrosting time is within the defrosting regulations. The defrosting efficiency is evaluated to be 41.16%-50.84% with variation of ambient temperatures, which indicates that the hot gas bypass defrosting method is suitable for the air source transcritical CO2 heat pump.
机译:由于其效率较高,跨临界CO2热泵被广泛使用。在低环境温度下霜是不可避免的,导致劣化的性能系数和加热能力。考虑到其他除霜方法的缺点和局限性,本文实验研究了热气体旁路除霜方法。详细研究了除霜过程中的压力和温度的动态特性,并描绘了压力 - 焓图。此外,提出了热源和能量消耗的能量分析以评估除霜效率。此外,还讨论了环境温度的影响。结果表明,除了初始阶段和除霜时间内,测量的参数在除霜过程中逐渐变化,除了除霜规范内。除霜效率评价为41.16%-50.84%,具有环境温度的变化,表明热气体旁路除霜方法适用于空气源跨临界CO2热泵。

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