首页> 外文会议>International Conference on Cooling and Heating Technologies(ICCHT2006); 20060726-30; Dalian(CN) >Experimental Investigation on Frost Growth and Dynamic Performance of an Air Source Heat Pump Unit under Frosting Conditions
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Experimental Investigation on Frost Growth and Dynamic Performance of an Air Source Heat Pump Unit under Frosting Conditions

机译:结霜条件下空气源热泵机组结霜及动态性能试验研究

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The dynamic performance of an air source heat pump (ASHP) unit under frosting conditions was experimentally investigated considering the fan performance curves and variable evaporation temperature. The indoor air temperature is kept at 20℃, the experimental outdoor air temperature ranged from -15℃ to 7℃ and the relative humidity from 50% to 90%. The transient heating capacity, coefficient of performance (COP), and the frost accumulation mass on the outdoor heat exchanger surface were measured under frosting conditions. The effects of the outdoor air parameters on frost formation and the performance of the ASHP unit were analyzed. The experimental results indicate that the heating capacity and COP of the ASHP unit increase with the frosting time in the initial frosting stage, and they are more than these under non-frosting conditions in the period about 80% of the running time. In the later frosting stage the heating capacity, COP, and evaporation pressure decrease rapidly, i.e., there is a performance degradation point, after which the performance of the ASHP unit decrease rapidly. This is in good agreement with the author's simulation results. At the meantime, it was found that the frost accumulation rate is greatest when the outdoor air temperature is about 0-3℃ without reference to the outdoor air relative humidity.
机译:考虑风扇性能曲线和可变蒸发温度,通过实验研究了空气源热泵(ASHP)在结霜条件下的动态性能。室内空气温度保持在20℃,实验室外空气温度保持在-15℃至7℃,相对湿度从50%至90%。在结霜条件下,测量了室外热交换器表面的瞬态热容量,性能系数(COP)和结霜量。分析了室外空气参数对结霜和ASHP机组性能的影响。实验结果表明,在结霜初期,ASHP装置的热容量和COP随结霜时间的增加而增加,在运行时间的80%左右,它们比非结霜条件下的要多。在随后的结霜阶段,加热能力,COP和蒸发压力迅速降低,即,存在性能下降点,此后,ASHP单元的性能迅速下降。这与作者的仿真结果非常吻合。同时发现,在不考虑室外空气相对湿度的情况下,室外空气温度在0-3℃左右时,霜的累积率最大。

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