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Experimental Investigation of Heat Pump Water Heater Using CO2 Zeotropic Mixture with Large Temperature Glide for Waste Heat Recovery
Journal of Refrigeration 2024, 45(4): 21-27
Published: 16 August 2024
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Heat pump technology can be used to upgrade and enhance the quality of low-grade waste heat in production and daily life. Zeotropic mixtures can achieve temperature matching during the heat exchange process of heat pump cycles, which realizes in-depth utilization of waste heat resources. This study conducts an experimental analysis of CO2/R1234yf, CO2/R290, CO2/R600a, and CO2/R32 zeotropic mixtures using a water-source heat pump experimental system. The performances of heat pumps with evaporators and condensers that simultaneously satisfy high-temperature differences were investigated using the zeotropic mixture. Results show that the amount of charge in the zeotropic mixture primarily affects the degree of cycle subcooling, thereby influencing the coefficient of performance (COP) of the system. When the mass composition of CO2/R1234yf is 15%/85%, an optimal refrigerant charge, which corresponds to a COP of 7.66 under the experimental condition (heat source inlet water temperature at 25 ℃, outlet at 5 ℃; heat sink inlet water temperature at 15 ℃, outlet at 45 ℃) is obtained. Furthermore, compared with pure R290, the CO2/R290 working pair exhibits an enhancement of 75.2% in the optimal COP, with a corresponding increase of 107.7% in the volumetric heating capacity (qv). Similarly, the CO2/R1234yf working pair demonstrates an improvement of 27.7% in the optimal COP and an increase of 92.0% in qv. The CO2/R32 working pair exhibits a 15.0% increase in the optimal COP. However, the CO2/R600a working pair exhibited only a 1.7% enhancement in the optimal COP, indicating a relatively low application potential.

Open Access Issue
Comparative Study of Energy Efficiency Test Methods and Energy Efficiency Limit Values of Water Chiller (Heat Pump) Units
Journal of Refrigeration 2024, 45(2): 30-40
Published: 16 April 2024
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As the main energy-consuming equipment of the centralized air-conditioning system, the improvement of the energy efficiency of water chiller (heat pump) units has a significant role in promoting the realization of the "dual carbon" target. GB/T 18430, as a basic standard for plumbing units, is nearing the end of its revision, and the accompanying energy efficiency standards GB19577—2015 need to be revised and upgraded accordingly. In this study, the assessment method of comfort-type water chiller (heat pump) units in GB/T 18430 is analyzed and compared with those of the corresponding U.S. and European standards. A theoretical model of water-cooled water chiller (heat pump) units is constructed such that the limited value levels specified in the energy efficiency standards of China, the U.S., and Europe are converted into the same index for comparison. The IPLV entry limit values of China′s water-cooled units, after increases of 5.4% and 25.2%, can match the energy efficiency levels of Path A and Path B of the American standard, respectively, and align with the European standards after a 13.4% increase; the energy efficiency limit values of air-cooled units can be basically on par with the European energy efficiency standards after increasing by 25.4%. This work provides a reference for the subsequent revision of the energy efficiency standard GB19577—2015.

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