二氧化碳(R744)及其与乙烷(R170)混合物在低蒸发温度下用于制冷和供暖系统的综合性能的热力学分析

Dahan Sun, Zhong-zhu Liu, Hao Zhang, Xin Zhang, Jiang Qin
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摘要

本文采用仿真方法研究了低蒸发温度下单级压缩跨临界循环中使用的 R744 和 R744/R170 混合制冷剂的系统性能,分析了蒸发温度、气体冷却器出口温度、R170 比例对性能系数(COP)、排气温度、最佳压力和压缩比的影响。结果表明,Popt 随气体冷却器出口温度和蒸发温度的升高而升高,随 R170 比例的增加而降低,先升高后降低。在加热系统中,R744/R170(25/75)的最大和最小 Popt 分别为 1.35 MPa、3.6 MPa 和 2.6 MPa,比 R170(0%、22.4% 和 50%)低 1.23 MPa、2.93 MPa 和 1.87 MPa;与纯 R744 相比,R744/R170 混合气体的系统压力较低。COPe 和 COPh 随蒸发温度的升高而升高,随气体冷却器出口温度的升高而降低。随着 R170 比例的增加,COPe 和 COPh 先降后升;R744 的最大 COPe 和 COPh 分别为 22.4%、29.6% 和 21.2%,R170 的最大 COPe 和 COPh 分别为 22.4%、50% 和 75%,R744 的 COPe 和 COPh 分别比 R170 高 10.3%、13.8% 和 10.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamic Analysis of Comprehensive Performance of Carbon Dioxide(R744) and Its Mixture With Ethane(R170) Used in Refrigeration and Heating System at Low Evaporation Temperature
In this paper, the system performance of R744 and R744/R170 mixed refrigerants used in a single-stage compression transcritical cycle at low evaporation temperature was studied by simulation method, and the effect of evaporation temperature, outlet temperature of gas cooler, R170 ratio on coefficient of performance (COP), discharge temperature, optimal pressure, and compression ratio were analyzed. The results show that Popt increases and decreases with the increase of outlet temperature and evaporation temperature of gas cooler and increases first and then decreases with the increase of R170 proportion. In the heating system, the maximum and minimum Popt of R744/R170 (25/75) were 1.35 MPa, 3.6 MPa, and 2.6 MPa and 1.23 MPa, 2.93 MPa, and 1.87 MPa lower than that of R170 (0%, 22.4%, and 50%); compared to pure R744, the system pressure of the mixed R744/R170 is lower. The COPe and COPh increase with the increase of evaporation temperature and decrease with the increase of outlet temperature of the gas cooler. With the increase of R170 proportion, they first decrease and then increase; the maximum COPe and COPh of R744 were 22.4%, 29.6%, and 21.2% and 10.3%, 13.8%, and 10.8% higher than those of R170 at 22.4%, 50% and 75%, respectively.
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