家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 250-254.doi: 10.19784/j.cnki.issn1672-0172.2025.99.052

• 第二部分 制冷与空调 • 上一篇    下一篇

制冷剂散热器在多联机中的应用分析和优化

刘志胜1, 蒋贤国1, 姚慧敏2   

  1. 1.海信空调有限公司 山东青岛 266000;
    2.青岛大学 山东青岛 266000
  • 发布日期:2025-12-30
  • 作者简介:刘志胜,本科学历。研究方向:制冷系统设计。地址:山东青岛海信空调有限公司。E-mail:liuzhisheng1@hisense.com。

Application analysis and optimization of refrigerant radiator in VRF

LIU Zhisheng1, JIANG Xianguo1, YAO Huimin2   

  1. 1. Hisense Air Conditioning Co., Ltd. Qingdao 266000;
    2. Qingdao University Qingdao 266000
  • Published:2025-12-30

摘要: 在多联机系统中,高效散热直接决定了整机性能与紧凑性。与传统翅片式换热器相比,制冷剂散热器凭借其卓越的散热效率、稳定的散热性能,以及对环境温度变化的低敏感性,正日益成为电控模块,特别是IPM冷却方案的首选。为精准量化其性能,通过理论建模与实验测试相结合的方法,对一款应用于实际产品的制冷剂散热器进行了深入分析,测得了制冷剂冷却时的整体热阻,通过测量揭示了其内部热阻的分布情况。基于此数据,提出了三种优化方案,为下一代高功率密度、高可靠性的多联机产品设计提供了可参考的技术路径。

关键词: 多联机, 制冷剂散热器, 优化

Abstract: In VRF air conditioning system, efficient heat dissipation directly determines the overall performance and compactness of the machine. Compared with traditional finned heat exchangers, refrigerant radiators are increasingly becoming the preferred choice for electronic control modules, especially IPM cooling solutions, due to their excellent heat dissipation efficiency, stable heat dissipation performance, and low sensitivity to environmental temperature changes. To accurately quantify its performance, conducted an in-depth analysis of a refrigerant radiator applied to practical products through a combination of theoretical modeling and experimental testing, measured the overall thermal resistance of the refrigerant during cooling, revealed the distribution of its internal thermal resistance through measurement. Based on this data, propose three optimization schemes, which provide reference technical paths for the design of next-generation high-power density and high reliability multi split products.

Key words: VRF, Refrigerant radiator, Optimization

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