家电科技 ›› 2024, Vol. 0 ›› Issue (zk): 253-258.doi: 10.19784/j.cnki.issn1672-0172.2024.99.051

• 第二部分 制冷与空调 • 上一篇    下一篇

进气工况对贯流风管机气动性能影响研究优化

王子涛, 李小磊, 高旭, 余明养   

  1. TCL空调器(中山)有限公司 广东中山 528427
  • 出版日期:2024-12-10 发布日期:2024-12-31
  • 作者简介:王子涛,硕士研究生。研究方向:风机风道设计及噪声控制研究。地址:广东省中山市南头大道西59号。E-mail:zitao.w@tcl.com/xiaolei1.li@tcl.com。

Research and optimization of the influence of intake form on the aerodynamic performance of cross flow duct fans

WANG Zitao, LI Xiaolei, GAO Xu, YU Mingyang   

  1. TCL Air Conditioner (Zhongshan) Co., Ltd Zhongshan 528427
  • Online:2024-12-10 Published:2024-12-31

摘要: 贯流风管机受限于吊顶安装的形式约束,产品设计工况与实际使用工况存在明显差异,并且贯流风机本身具有偏心涡不稳定的流场特性,吊顶进气格栅等上游导流部件影响,导致风机风道性能下降和噪声恶化。因此,展开对不同进气工况的贯流风管机性能影响研究是十分必要的。为了研究进气工况对贯流风管机的性能影响规律,总结设计优化方法,对贯流风管机自由进气与下进气工况进行了实验测试及仿真机理研究。在下进气工况下,采用双导弧流道的下进气流道方案,并设计不同参数组合的双导弧流道,寻优多参数组合最佳点,改善流动分布,提升风量,改进流动效率,优化风机风道气动噪声性能,为后续贯流风管机设计开发提供理论指导。

关键词: 贯流风管机, 进气工况, 流体仿真, 实验优化

Abstract: The cross flow duct fan is limited by the form constraints of suspended ceiling installation, and there are significant differences between product design and actual use conditions. In addition, the cross flow fan itself has the flow field characteristics of eccentric vortex instability, which is affected by upstream guide components such as suspended ceiling air intake grilles, resulting in a decrease in fan duct performance and noise deterioration. Therefore, it is necessary to conduct research on the performance impact of cross flow duct fans under different intake conditions. In order to study the impact of intake conditions on the performance of the cross flow duct fan, summarize design optimization methods, and conduct experimental testing and simulation mechanism research on the free intake and lower intake conditions of the cross flow duct fan. Under the condition of lower air intake, a dual guide arc flow channel scheme is adopted, and different parameter combinations of dual guide arc flow channels are designed to optimize the optimal point of multi parameter combination, improve flow distribution, increase air volume, improve flow efficiency, optimize the aerodynamic noise performance of the fan duct, and provide theoretical guidance for the design and development of subsequent cross flow duct fans.

Key words: Cross flow duct fan, Air intake condition, Fluid simulation, Experimental optimization

中图分类号: