家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 423-426.doi: 10.19784/j.cnki.issn1672-0172.2025.99.088

• 第四部分 噪声与振动控制 • 上一篇    下一篇

基于响应面技术的离心叶轮多目标寻优

仇明贵, 周伟峰, 胡杨   

  1. 华帝股份有限公司 广东中山 528400
  • 发布日期:2025-12-30
  • 作者简介:仇明贵,学士学位。研究方向:厨电产品气动噪声控制。地址:广东省中山市小榄镇华园路1号。E-mail:qiumg@vatti.com.cn。

Multi-objective optimization of centrifugal impeller based on response surface technology

QIU Minggui, ZHOU Weifeng, HU Yang   

  1. Vatti Corporation Limited Zhongshan 528400
  • Published:2025-12-30

摘要: 为了进一步降低吸油烟机的工作噪声,改善用户体验,基于响应面优化技术,通过对叶轮进行参数化建模,根据过往试验数据确定了三个关键参数作为重点优化对象,以吸油烟机的工作噪声、消声室噪声、最大静压、爆炒风量四个指标作为目标进行多参数多目标试验寻优。通过13组试验方案确定了参数与目标的解析关系,并给出工作噪声、消声室噪声最低,最大静压、爆炒风量最大时的叶轮参数,经过试验验证,该方法可在给定范围内找到问题的全局最优解。

关键词: 吸油烟机, 叶轮, 响应面, 多目标寻优

Abstract: In order to further reduce the working noise of the range hood and improve the user experience, based on the response surface optimization technology, through the parametric modeling of the impeller, three key parameters are determined as the key optimization objects according to the previous test data. taking the range hood’s working noise, anechoic chamber noise, maximum static pressure and stir-frying air volume as targets, multi-parameter and multi-objective test optimization is carried out. The analytical relationship between the parameters and the target is determined through 13 groups of test schemes, and the impeller parameters are given when the working noise, the noise of the anechoic chamber is the lowest, the maximum static pressure and the air volume of stir-frying are maximum. This method can find the global optimal solution of the problem in a given range.

Key words: Range hood, impeller, response surface, multi-objective optimization

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