家电科技 ›› 2026, Vol. 0 ›› Issue (1): 36-38.doi: 10.19784/j.cnki.issn1672-0172.2026.01.004

• 专题:制冷家电性能优化仿真研究 • 上一篇    下一篇

补气增焓多联机空调系统的APF性能仿真

熊成龙, 李文博, 吴庆壮, 单联瑜   

  1. 小米科技(武汉)有限公司 湖北武汉 430075
  • 出版日期:2026-02-01 发布日期:2026-05-07
  • 通讯作者: 李文博,E-mail:liwenbo9@xiaomi.com。
  • 作者简介:熊成龙,硕士学位。研究方向:多联机性能研发。地址:武汉东湖新技术开发区九峰一路66号1层006号(自贸区武汉片区)小米科技武汉有限公司。E-mail:xiongchenglong@xiaomi.com。

APF simulation of a vapor injection variable refrigerant flow air-conditioning system

Xiong Chenglong, Li Wenbo, Wu Qingzhuang, Shan Lianyu   

  1. Xiaomi Technology (Wuhan) Co., Ltd. Wuhan 430075
  • Online:2026-02-01 Published:2026-05-07

摘要: 针对补气增焓多联机空调系统的APF能效评价问题,通过搭建包括中间补气压缩机、换热器、经济器等部件模型,以及双层路径的系统流量和压力解耦求解算法,开发了针对补气增焓多联机空调系统的APF性能仿真系统模型。基于APF指标的10个典型工况,结合实际数据对仿真模型性能进行了验证,结果表明,模型对单工况的仿真精度误差均小于5%,对于APF的误差为2.28%,表明该模型具有较高的计算精度与工程适用性。

关键词: 多联机, 系统仿真, 补气增焓, APF

Abstract: To address the evaluation of the annual performance factor (APF) for vapor injection variable refrigerant flow (VRF) air-conditioning systems, a system-level performance simulation model is developed in this study. The model integrates component models of the vapor injection compressor, heat exchangers, and economizer, and employs a dual-path decoupled solution algorithm for system flow rate and pressure. Based on the ten standard operating conditions defined for APF evaluation, the proposed model is validated against experimental data. The results show that the prediction errors of the model are within 5% for individual operating conditions, while the overall APF prediction error is 2.28%. These results demonstrate that the developed model achieves high computational accuracy and good engineering applicability.

Key words: Variable refrigerant flow, System simulation, Vapor injection, Annual performance factor

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