家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 41-45.doi: 10.19784/j.cnki.issn1672-0172.2025.99.008

• 第一部分 优秀论文 • 上一篇    下一篇

离心风机高度与风管机进风口尺寸的适配性研究

杨彤, 诸葛泽鑫, 肖美娜, 李建建   

  1. 小米科技(武汉)有限公司 湖北武汉 430070
  • 发布日期:2025-12-30
  • 作者简介:杨彤,工学博士,流体工程师。研究方向:风机、风道设计与优化。地址:小米科技(武汉)有限公司。E-mail:shlsyt@126.com。

Research on the adaptability between the height of centrifugal fans and the inlet size of duct fans

YANG Tong, ZHUGE Zexin, XIAO Meina, LI Jianjian   

  1. Xiaomi Technology (Wuhan) Co., Ltd. Wuhan 430070
  • Published:2025-12-30

摘要: 离心风机作为风管机室内机风量与噪声的核心影响因素,前者是衡量风管机性能的关键指标,后者直接关联用户使用体验。以某型号风管机为研究对象,在进风口尺寸既定条件下,通过多组不同风机高度参数的仿真模拟与实验验证,系统探究风管机离心风机高度与进风口尺寸的匹配机制,进而提炼适用于工程设计的风机高度优化规律。研究表明:单纯以风量最大化为目标时,风机高度与进风口尺寸存在理论最优比例关系;而当同步考虑噪声控制需求时,需通过结构优化抑制箱体内大尺度涡流的产生,此时最优匹配参数将基于气动-噪声耦合特性重新界定。

关键词: 离心风机, 数值仿真, 试验, 旋涡, 扩压器分离涡

Abstract: As a core influencing factor of air volume and noise for the indoor unit of duct air conditioners, the centrifugal fan is such that the former is a key indicator for measuring the performance of duct air conditioners, and the latter is directly related to the user experience. Taking a certain type of duct air conditioner as the research object, systematically explores the matching mechanism between the height of the centrifugal fan for duct air conditioners and the size of the air inlet under the condition of a fixed air inlet size through simulation and experimental verification of multiple groups of different fan height parameters, so as to extract the optimization rules for the fan height applicable to engineering design. The study shows that when simply aiming at maximizing the air volume, there is a theoretical optimal proportional relationship between the fan height and the air inlet size; however, when considering the noise control requirements simultaneously, it is necessary to suppress the generation of large-scale eddies in the casing through structural optimization, and at this time, the optimal matching parameters will be redefined based on the aerodynamic-noise coupling characteristics.

Key words: Centrifugal fan, Numerical simulation, Experimental testing, Vortex, Diffuser separation vortex

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