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Theoretical performance analysis of heat pump water heaters using carbon dioxide as refrigerant

机译:以二氧化碳为制冷剂的热泵热水器的理论性能分析

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摘要

The aim of this paper is to simulate the performance of an air source heat pump water heater using carbon dioxide (CO_2) as a working fluid. The heat pump water heating system consists of a compressor, a gas cooler, an expansion device and an evaporator. The computer simulation model has been developed by using the heat transfer data and the thermodynamic properties of CO_2. The effects on the heat pump performance by the operating parameters such as the compressor rotational speed, the inlet water temperature at the gas cooler, the inlet air temperature at the evaporator and the mass flow rate ratio of water to refrigerant were presented. For rated capacities of a 4 kW compressor with a 10 kW gas cooler and a 6 kW evaporator, the coefficient of performance is found to be between 2.0 and 3.0. The mass flow rate ratio of water and CO_2 between 1.2 and 2.2 is the most suitable value for generating hot water temperature above 60℃ at 15-25℃ ambient air temperature.
机译:本文的目的是模拟以二氧化碳(CO_2)为工作流体的空气源热泵热水器的性能。热泵水加热系统由压缩机,气体冷却器,膨胀装置和蒸发器组成。利用传热数据和CO_2的热力学性质,建立了计算机仿真模型。提出了诸如压缩机转速,气体冷却器入口水温,蒸发器入口空气温度以及水与制冷剂的质量流率之类的运行参数对热泵性能的影响。对于具有10 kW气体冷却器和6 kW蒸发器的4 kW压缩机的额定容量,发现性能系数在2.0到3.0之间。在15至25℃的环境温度下,水与CO_2的质量流量比为1.2至2.2是最适合产生60℃以上热水温度的值。

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