家电科技 ›› 2023, Vol. 0 ›› Issue (6): 114-117.doi: 10.19784/j.cnki.issn1672-0172.2023.06.019

• 论文 • 上一篇    下一篇

基于CFD仿真的涡旋压缩机吸气间隙分析

杨帆1, 杨志鹏1, 李霄2, 冯能文1, 刘金平3   

  1. 1.美的集团工业技术事业群研究院 广东佛山 528000;
    2.广东美的环境科技有限公司 广东佛山 528000;
    3.华南理工大学电力学院 广东广州 510000
  • 出版日期:2023-12-01 发布日期:2024-04-17
  • 作者简介:杨帆,博士学位。研究方向:涡旋压缩机仿真技术,润滑和密封技术。地址:广东省佛山市顺德区北滘美的全球创新中心。E-mail:yangfan28@midea.com。
  • 基金资助:
    本文受2022年顺德区核心技术攻关项目《高能效涡旋压缩机的研究及产业化》支持,索引号114406060070556886/2022-00233

Analysis of the suction gap in scroll compressor based on CFD computation

YANG Fan1, YANG Zhipeng1, LI Xiao2, FENG Nengwen1, LIU Jinping3   

  1. 1. Industrial Technology Business Group Research Institute in Midea Company Foshan 528000;
    2. Guangdong Midea Environmental Technology Co., Ltd. Foshan 528000;
    3. School of Electric Power, South China University of Technology Guangzhou 510000
  • Online:2023-12-01 Published:2024-04-17

摘要: 涡旋压缩机静盘底部吸气间隙设计用来增加该压缩腔吸气流量,并对吸气过程和性能产生明显影响。为了研究吸气间隙的影响规律,采用CFD仿真研究了不同吸气间隙对于吸气过程非定常压力场、流量分布和性能的影响,结果发现吸气压力和流量都呈现非定常波动,随着吸气间隙减小吸气压力不断增大,吸气流量不断减小,吸气压力的增加使得压缩机功率降低,总体能效增加。通过整机测试发现在DOE-B工况吸气间隙从有到无,冷量降低0.70%,输入功率降低约1.01%,能效提升约0.32%,验证了所建立仿真方法的有效性,研究可为涡旋压缩机吸气过程的优化设计提供参考。

关键词: 吸气间隙, 非定常压力, 流量, 涡旋压缩机, CFD仿真

Abstract: The suction gap at the bottom of the stationary disc in the scroll compressor is designed to increase the suction flow rate of the compression chamber and have a significant impact on the suction process and performance. To study the influence of suction gap, CFD simulation was used to study the effects of different suction gaps on the unsteady pressure field, flow distribution, and performance. The results showed that the suction pressure and flow rate showed unsteady fluctuations. As the suction gap decreased, the suction pressure continued to increase, and the suction flow rate continued to decrease. The increase in suction pressure led to a decrease in compressor power and an overall increase in energy efficiency. Through whole machine testing, it was found that under DOE-B condition, when the suction gap was from present to absent, the cooling capacity decreased by 0.70%, the input power decreased by about 1.01%, and the energy efficiency increased by about 0.32%. This verified the effectiveness of the established CFD simulation method, and the research can provide guidance for the optimization design of the suction process of scroll compressors.

Key words: Suction gap, Unsteady pressure, Flow rate, Scroll compressor, CFD computation

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