Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS

The surface vibration velocities and near-field pressure of the underwater cylindrical shell, which are excited by external force, were calculated using wave propagation method. In fact, the main goal is to explore the measures to suppress vibration of structure and near-field radiation noise. The w...

Full description

Bibliographic Details
Main Authors: Bingru Li, Fu Zhuo, Zhanhong Wan, Huiliang Ge
Format: Article
Language:English
Published: SAGE Publishing 2019-12-01
Series:Journal of Low Frequency Noise, Vibration and Active Control
Online Access:https://doi.org/10.1177/1461348418822553
id doaj-04a9522d546846debfd72a47b664f759
record_format Article
spelling doaj-04a9522d546846debfd72a47b664f7592020-11-25T03:54:35ZengSAGE PublishingJournal of Low Frequency Noise, Vibration and Active Control1461-34842048-40462019-12-013810.1177/1461348418822553Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFSBingru LiFu ZhuoZhanhong WanHuiliang GeThe surface vibration velocities and near-field pressure of the underwater cylindrical shell, which are excited by external force, were calculated using wave propagation method. In fact, the main goal is to explore the measures to suppress vibration of structure and near-field radiation noise. The wave number frequency spectrum method that combined the vibration wave number with the frequency domain method can be applied for the analysis of wave propagation in shell structures; based on the method and calculated results, the wave propagation spatial characteristics of vibration and near-field acoustic radiation of the underwater cylindrical shell were also analyzed. It is shown that there are three waves in cylindrical shell: flexural wave, shear wave, and extended wave; the first two belong to transversal wave, while the last belongs to longitudinal wave, and the wave propagation directions and velocities are all obtained. Near-field radiation sound waves are more complex than in surface acoustic field. In isotropic solid medium, wave numbers of the same type of waves at one frequency are the same. In order to reduce the vibration and noise, the dampers should be installed in the direction of wave propagation, and the types of dampers are determined by the wave propagation velocities. This work will give some guidelines for vibration and noise reduction of this kind of shells.https://doi.org/10.1177/1461348418822553
collection DOAJ
language English
format Article
sources DOAJ
author Bingru Li
Fu Zhuo
Zhanhong Wan
Huiliang Ge
spellingShingle Bingru Li
Fu Zhuo
Zhanhong Wan
Huiliang Ge
Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS
Journal of Low Frequency Noise, Vibration and Active Control
author_facet Bingru Li
Fu Zhuo
Zhanhong Wan
Huiliang Ge
author_sort Bingru Li
title Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS
title_short Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS
title_full Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS
title_fullStr Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS
title_full_unstemmed Analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with WNFS
title_sort analysis on near-field vibroacoustic characteristics of the underwater cylindrical shells with wnfs
publisher SAGE Publishing
series Journal of Low Frequency Noise, Vibration and Active Control
issn 1461-3484
2048-4046
publishDate 2019-12-01
description The surface vibration velocities and near-field pressure of the underwater cylindrical shell, which are excited by external force, were calculated using wave propagation method. In fact, the main goal is to explore the measures to suppress vibration of structure and near-field radiation noise. The wave number frequency spectrum method that combined the vibration wave number with the frequency domain method can be applied for the analysis of wave propagation in shell structures; based on the method and calculated results, the wave propagation spatial characteristics of vibration and near-field acoustic radiation of the underwater cylindrical shell were also analyzed. It is shown that there are three waves in cylindrical shell: flexural wave, shear wave, and extended wave; the first two belong to transversal wave, while the last belongs to longitudinal wave, and the wave propagation directions and velocities are all obtained. Near-field radiation sound waves are more complex than in surface acoustic field. In isotropic solid medium, wave numbers of the same type of waves at one frequency are the same. In order to reduce the vibration and noise, the dampers should be installed in the direction of wave propagation, and the types of dampers are determined by the wave propagation velocities. This work will give some guidelines for vibration and noise reduction of this kind of shells.
url https://doi.org/10.1177/1461348418822553
work_keys_str_mv AT bingruli analysisonnearfieldvibroacousticcharacteristicsoftheunderwatercylindricalshellswithwnfs
AT fuzhuo analysisonnearfieldvibroacousticcharacteristicsoftheunderwatercylindricalshellswithwnfs
AT zhanhongwan analysisonnearfieldvibroacousticcharacteristicsoftheunderwatercylindricalshellswithwnfs
AT huiliangge analysisonnearfieldvibroacousticcharacteristicsoftheunderwatercylindricalshellswithwnfs
_version_ 1724472889693962240