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Research on noise reduction methods for indoor substations based on resonant sound absorption

Authors :
Ma, Jiangang
Geng, Mingxin
Zhao, Yalin
Wang, Lv
Fan, Chuang
Guo, Jipu
Yu, Xiaobing
Ma, Jiangang
Geng, Mingxin
Zhao, Yalin
Wang, Lv
Fan, Chuang
Guo, Jipu
Yu, Xiaobing
Source :
Vibroengineering Procedia, Vol. 54, 2024, p. 167-173.; 2345-0533; 2538-8479
Publication Year :
2024

Abstract

Aiming to reduce the impact of substation noise on the lives of surrounding residents, improving the low and middle frequencies acoustic performance of traditional resistive mufflers in indoor substations is significant. The paper is based on the resonance sound absorption mechanism, and for the first time applies multi-frequency resonance noise reduction technology to the research field of indoor substation noise control, proposing a multi-frequency resonant muffling structure. The acoustic performance of the proposed muffler unit is investigated through theoretical and numerical analysis. The measured noise data of the indoor substation is used as sound excitation in the numerical analysis. The results show that at frequencies of 100 Hz, 200 Hz, 300 Hz, 400 Hz, and 500 Hz, the noise in indoor substations is significantly reduced by the multi-frequency resonant muffling structure. The paper provides references for the application of multi-frequency resonant mufflers in the field of noise control of indoor substations.

Details

Database :
OAIster
Journal :
Vibroengineering Procedia, Vol. 54, 2024, p. 167-173.; 2345-0533; 2538-8479
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1432722270
Document Type :
Electronic Resource