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CO2及CO2/R41跨临界单/双级循环系统的热力学性能对比研究

王栋 余豪 洪久超 梅申功 章康康 鲁进利

流体机械2026,Vol.54Issue(4):45-54,10.
流体机械2026,Vol.54Issue(4):45-54,10.DOI:10.3969/j.issn.1005-0329.2026.04.006

CO2及CO2/R41跨临界单/双级循环系统的热力学性能对比研究

Comparative study on thermodynamic performance of CO2 and CO2/R41 transcritical single/two-stage cycle systems

王栋 1余豪 1洪久超 1梅申功 1章康康 1鲁进利1

作者信息

  • 1. 安徽工业大学 建筑工程学院,安徽 马鞍山 243002
  • 折叠

摘要

Abstract

In order to improve the comprehensive performance of the CO2 transcritical heat pump water heater system,thermodynamic models of single-stage and two-stage cycles adopting pure CO₂ and CO₂/R41 azeotropic mixture as working fluids are established.Based on energy and exergy analysis methods,the comprehensive performance of the four cycle systems is calculated and comparatively analyzed.The results show that the two-stage cycle can effectively reduce the compressor discharge temperature(a maximum reduction of 61.79℃)and power consumption,accompanied by a partial decline in exergy efficiency.The CO ₂/R41 mixed working fluid dramatically decreases the optimal high pressure(a maximum reduction of 20.96%)and increases the specific heating capacity(a maximum increment of 19.68%),while raising the specific power consumption of the compressor.The addition of R41 exerts a slight influence on the irreversible loss ratio of each component in the CO₂ transcritical cycle.Among the four cycle systems,the capillary tube presents relatively high irreversible loss.The CO₂/R41 two-stage cycle system achieves the highest COP and superior specific heating capacity,as well as a relatively low discharge temperature and operating pressure.This study can provide theoretical support for the engineering application and performance optimization of CO₂/R41 mixed working fluids in two-stage transcritical heat pump systems.

关键词

双级循环/CO2/CO2/R41/能量分析/㶲分析

Key words

two-stage cycle/CO2/CO2/R41/energy analysis/oxygen analysis

分类

通用工业技术

引用本文复制引用

王栋,余豪,洪久超,梅申功,章康康,鲁进利..CO2及CO2/R41跨临界单/双级循环系统的热力学性能对比研究[J].流体机械,2026,54(4):45-54,10.

基金项目

国家重点研发计划课题(2025YFF0521003) (2025YFF0521003)

雄安新区科技创新专项(2025XAGG0034) (2025XAGG0034)

安徽工业大学青年科研基金项目(QZ202416) (QZ202416)

流体机械

1005-0329

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