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Performance of a Transcritical CO_2 Heat Pump for Simultaneous Water Cooling and Heating

机译:同时供冷和供热的跨临界CO_2热泵的性能

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This paper presents the experimental as well as the simulated performance studies on the transcritical CO_2 heat pumps for simultaneous water cooling and heating; effects of water mass flow rates and water inlet temperatures of both evaporator and gas cooler on the cooling and heating capacities, system COP and water outlets temperatures are investigated. Study shows that both the water mass flow rate and inlet temperature have significant effect on system performances. Test results show that the effect of evaporator water mass flow rate on the system performances and water outlet temperatures is more pronounced (COP increases 0.6 for 1 kg/min) compared to the gas cooler water mass flow rate (COP increases 0.4 for 1 kg/min) and the effect of gas cooler water inlet temperature is more significant (COP decreases 0.48 for given ranges) compared to the evaporator water inlet temperature (COP increases 0.43 for given ranges). Comparisons of experimental values with simulated results show the maximum deviation of 5% for cooling capacity, 10%for heating capacity, 16% for system COP. This study offers useful guidelines for selecting appropriate water mass flow rate to obtain required system performance.
机译:本文介绍了同时供冷和供热的跨临界CO_2热泵的实验和模拟性能研究。研究了水质量流量和蒸发器和气体冷却器的进水温度对制冷和制热能力,系统COP和出水温度的影响。研究表明,水的质量流量和入口温度都对系统性能有重要影响。测试结果表明,与气体冷却器水的质量流量(1 kg / min的COP增加0.4)相比,蒸发器水质量流速对系统性能和出水温度的影响更明显(COP增加0.6的1 kg / min)。分钟),并且与蒸发器进水温度相比(给定范围COP增加0.43),气体冷却器进水温度的影响更显着(给定范围COP降低0.48)。实验值与模拟结果的比较表明,冷却能力的最大偏差为5%,加热能力的最大偏差为10%,系统COP的最大偏差为16%。这项研究为选择适当的水质量流量以获得所需的系统性能提供了有用的指导。

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