Optimization of low noise blade of small axial fan at low reynolds number

Peixun Yu, Xiang Song, Junqiang Bai, Heye Xiao

科研成果: 书/报告/会议事项章节会议稿件同行评审

1 引用 (Scopus)

摘要

A multidisciplinary optimization design to simultaneously enhance the aeroacoustic and aerodynamic performance of an cooling fan is performed. The flow analysis of the cooling fan is conducted by solving three dimensional steady-state RANS equations with shear-stress transport turbulence model. Based on the results of the steady flow, aeroacoustic analysis is performed by using the Hanson and Brooks model. A multi-objective optimization is performed to simultaneously improve the efficiency and reduce the sound pressure level through an improved non-dominated sorting gentic algorithm. A Kriging surrogate model is used to approximate the function value while reducing computational cost. Series of optimum designs on the pareto front yielded increases in efficiency and decreases in the sound pressure level compared to the reference design. Through numerical analysis and experimental test, the aerodynamic efficiency is increased by 5% and the total sound pressure level is reduced by 4dB without loss of air volume for the selected optimized cooling fan. The thining of rotor boundary layer and inward load shift are the main factors to improve aerodynamic efficiency and reduce noise of the cooling fan.

源语言英语
主期刊名Proceedings of INTER-NOISE 2021 - 2021 International Congress and Exposition of Noise Control Engineering
编辑Tyler Dare, Stuart Bolton, Patricia Davies, Yutong Xue, Gordon Ebbitt
出版商The Institute of Noise Control Engineering of the USA, Inc.
ISBN(电子版)9781732598652
DOI
出版状态已出版 - 2021
活动50th International Congress and Exposition of Noise Control Engineering, INTER-NOISE 2021 - Washington, 美国
期限: 1 8月 20215 8月 2021

出版系列

姓名Proceedings of INTER-NOISE 2021 - 2021 International Congress and Exposition of Noise Control Engineering

会议

会议50th International Congress and Exposition of Noise Control Engineering, INTER-NOISE 2021
国家/地区美国
Washington
时期1/08/215/08/21

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