Abstract detail

126 / 2021-03-31 10:52:27
Energy transmission in a two-dimensional duct-plate-cavity coupling system
vibro-acoustic coupling,energy transmission,divergence,acoustic intensity,duct acoustics
Special Sessions > Noise, vibration and their application in power systems
Draft Paper Accepted
Yang Liu / Harbin Engineering University
Yufei Zhang / Dalian Maritime University
Jingtao Du / Harbin Engineering University
Duct with a flexible plate mounted in its sidewall is sought as an effective means for duct noise control in low frequency range. Most of the existing studies are focused on the transmission loss behavior, while there is little effort devoted to its physical mechanism in terms of energy transmission. Motived by current limitation, a novel and efficient structural-acoustic coupling model is established for the study of vibro-acoustic coupling and energy transmission in a cavity-backed plate duct silencer. Acoustic intensity vector and its divergence are studied to illustrate the structural-acoustic coupling characteristics and reveal the distributions of energy sources and energy sinks. The influence of elastic edge restraints on the sound attenuation characteristics of coupled duct-plate silencer is then addressed and investigated in detail. It is believed that this work will be of great help for engineer to obtain a better understanding on the physical mechanism of such structural-acoustic silencer and achieve the optimal design.

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Important Dates

Abstract Submission Deadline:

 31st March 2021 15th April 2021

Extended Deadline: 1st Aug. 2022

 

Abstract Acceptance:

30th April  2021 Rollover

 

Full Paper Submission Deadline:

30th June 2021  14th July 2021

Extended Deadline: 15th Aug. 2022 

 

Notification of Acceptance:

15th August 2021 1st Sept. 2021

1st Sept. 2022

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