彭斌, 王永强. 回收余热的空气源热泵热水器的性能模拟及试验研究[J]. 北京工业大学学报, 2021, 47(12): 1303-1310, 1394. DOI: 10.11936/bjutxb2020040010
    引用本文: 彭斌, 王永强. 回收余热的空气源热泵热水器的性能模拟及试验研究[J]. 北京工业大学学报, 2021, 47(12): 1303-1310, 1394. DOI: 10.11936/bjutxb2020040010
    PENG Bin, WANG Yongqiang. Performance Simulation and Experimental Investigation of Heat Pump Water Heater With Waste Heat Air Energy[J]. Journal of Beijing University of Technology, 2021, 47(12): 1303-1310, 1394. DOI: 10.11936/bjutxb2020040010
    Citation: PENG Bin, WANG Yongqiang. Performance Simulation and Experimental Investigation of Heat Pump Water Heater With Waste Heat Air Energy[J]. Journal of Beijing University of Technology, 2021, 47(12): 1303-1310, 1394. DOI: 10.11936/bjutxb2020040010

    回收余热的空气源热泵热水器的性能模拟及试验研究

    Performance Simulation and Experimental Investigation of Heat Pump Water Heater With Waste Heat Air Energy

    • 摘要: 空气源热泵机组在较低的环境温度时,会出现结霜、制热量下降等问题.而余热空气源热泵系统以40℃低温余热作为低温热源,不仅避免了结霜、制热量下降等问题,而且回收了低温余热资源.通过构建空气源热泵系统的数学模型,揭示余热流量、温度及冷水温度对系统性能的影响规律,并搭建试验平台验证数学模型的结果.结果显示,在热风温度为45℃、风量为4 500 m3/h时,系统的各项性能指标参数达到最佳值;随冷水温度的升高,系统性能系数(coefficient of performance,COP)的变化不明显;在冷水温度为10℃时,压比的偏差最大值为12.5%.回收余热的空气源热泵系统的性能模拟结果为低温余热的回收利用提供了一定的理论指导.

       

      Abstract: When the air energy heat pump unit is in low ambient temperature, it will appear frosting, heat reduction and other problems. The waste heat air energy heat pump system uses 40℃ low-temperature waste heat as low-temperature heat source, which not only avoids frosting and heat reduction, but also recovers low-temperature waste heat resources. By building the mathematical model of air energy heat pump system, the influence of waste heat flow, temperature and cold water temperature on the system performance was revealed, and an experimental platform was built to verify the results of the mathematical model. Results show that when the temperature of hot air and air volume are 45℃ and 4 500 m3/h, respectively, the performance parameters of the system reach the best value; with the increase of cold water temperature, the change of coefficient of performance (COP) of the system is not obvious; when the temperature of cold water is 10℃, the maximum deviation of pressure ratio is 12.5%. The performance simulation results of air energy heat pump system provide a theoretical guidance for the recovery and utilization of low-temperature waste heat.

       

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