家电科技 ›› 2024, Vol. 0 ›› Issue (zk): 379-383.doi: 10.19784/j.cnki.issn1672-0172.2024.99.079

• 第三部分 材料与零部件 • 上一篇    下一篇

滚动转子式压缩机储液器对性能的影响分析

吴飞1,2, 廖四清1,2, 陈磊1,2   

  1. 1.广东美芝制冷设备有限公司 广东佛山 528333;
    2.美的集团股份有限公司 广东佛山 528333
  • 出版日期:2024-12-10 发布日期:2024-12-31
  • 作者简介:吴飞,硕士学位。研究方向:制冷空调及压缩机。地址:广东省佛山市顺德区大良南霞路1号广东美芝制冷设备有限公司。E-mail:394083232@qq.com。

Analysis the impact of rolling piston compressor reservoirs on performance

WU Fei1,2, LIAO Siqing1,2, CHEN Lei1,2   

  1. 1. Guang Dong Mei Zhi Compressor Co., Ltd. Foshan 528333;
    2. Midea Group Co., Ltd. Foshan 528333
  • Online:2024-12-10 Published:2024-12-31

摘要: 基于储液器在系统中发挥的功能,研究传统高背压转子式压缩机(简称有储机型)取消储液器(简称无储机型)后的性能变化趋势,并对基于系统参数的变化分析原因,为后续取消储液器的系统构架提供可行性分析。首先,通过单体仿真,发现在GX工况下(吸气过热度8 ℃),有储机和无储机的COP基本一致,试验台实测的结果是两者COP差异<0.4%,与仿真数据基本吻合;而通过搭载空调系统测试以及在单体吸气干度试验台复现,发现直接替换压缩机,系统配置不变更,无储机型的吸气带液量增大,能效衰减约5.2%,而通过调整节流组件及制冷剂封入量,可以实现无储机型整机性能不衰减(能效差异<0.5%),此时两者的吸气带液量基本一致。最后,摸底了调整系统配置之后的Max排气温度,发现温度不超过115 ℃,符合压缩机规格书要求。

关键词: 压缩机, 取消储液器, 性能衰减, 系统配置, 吸气带液

Abstract: Based on the function of the accumulator in the system, this paper studies the performance change trend of the traditional high-back pressure rotary compressor (Abbreviations: models with reservoirs) after canceling the accumulator (Abbreviations: models without reservoirs). It also analyzes the reasons for the changes based on system parameters, and provides a feasibility analysis for the subsequent system architecture without an accumulator. Firstly, through single-unit simulation, it was found that under the single-unit GX working condition (8 ℃ suction superheat), the COP of the system with and without accumulator was basically the same. The result of the single-unit test showed that the COP difference between the two was less than 0.4%, which was basically consistent with the simulation data. However, through air conditioning system testing and reproduction on a single-unit suction dryness test bench, it was found that directly replacing the compressor without changing the system configuration, the non-accumulator model has an increased liquid-carrying capacity during suction and a energy efficiency decline of about 5.2%. By adjusting the throttling components and refrigerant charge, the non-accumulator model's overall performance can be maintained without decline (energy efficiency difference <0.5%), and the liquid-carrying capacity of the two is basically the same. Finally, after adjusting the system configuration, the maximum exhaust temperature was determined, and it was found that the temperature did not exceed 115 ℃, which meets the specifications of the compressor manual.

Key words: Compressor, Eliminate reservoirs, Performance degradation, System configuration, liquid-carrying capacity during suction

中图分类号: