Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis

Physical mechanisms of active control of sound transmission through orthogonally two ribs stiffened double-panel structure are investigated. This is the continued work of the single rib stiffened case. For the orthogonally two ribs stiffened case, four different cluster mode groups can be coupled wi...

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Main Authors: Xiyue Ma, Kean Chen, Jian Xu
Format: Article
Language:English
Published: MDPI AG 2019-08-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/16/3286
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spelling doaj-b23d9efc719947a787f9892138180d8e2020-11-25T01:57:13ZengMDPI AGApplied Sciences2076-34172019-08-01916328610.3390/app9163286app9163286Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism AnalysisXiyue Ma0Kean Chen1Jian Xu2School of Marine Science and Technology, Northwestern Polytechnical University, Xi’an 710072, ChinaSchool of Marine Science and Technology, Northwestern Polytechnical University, Xi’an 710072, ChinaSchool of Marine Science and Technology, Northwestern Polytechnical University, Xi’an 710072, ChinaPhysical mechanisms of active control of sound transmission through orthogonally two ribs stiffened double-panel structure are investigated. This is the continued work of the single rib stiffened case. For the orthogonally two ribs stiffened case, four different cluster mode groups can be coupled with each other, due to the interlaced coupling effects of the horizontal and vertical ribs. One cavity mode can couple with and transmit sound energy to any type of base plate mode of the radiating ribbed plate. Consequently, the main differences of the control mechanism, when compared with the single ribbed case, lie in two aspects. One is that a novel mechanism appears. That is, suppressing and rearranging the cavity modes simultaneously achieves the suppression of the base plate modes. The other is that rearrangement of the cavity modes to rearrange the base plate modes for achieving sound radiation cancellation almost does not appear. The reason is that all types of cavity mode can couple with any one of the base plate modes due to the coupling effects of the two ribs. There is only a need to rearrange several important cavity modes to achieve suppressing the base plate mode of the radiating ribbed plate.https://www.mdpi.com/2076-3417/9/16/3286orthogonally two ribs stiffened double-panel structuresound transmissionactive controlphysical mechanisms
collection DOAJ
language English
format Article
sources DOAJ
author Xiyue Ma
Kean Chen
Jian Xu
spellingShingle Xiyue Ma
Kean Chen
Jian Xu
Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis
Applied Sciences
orthogonally two ribs stiffened double-panel structure
sound transmission
active control
physical mechanisms
author_facet Xiyue Ma
Kean Chen
Jian Xu
author_sort Xiyue Ma
title Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis
title_short Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis
title_full Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis
title_fullStr Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis
title_full_unstemmed Active Control of Sound Transmission through Orthogonally Rib Stiffened Double-Panel Structure: Mechanism Analysis
title_sort active control of sound transmission through orthogonally rib stiffened double-panel structure: mechanism analysis
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-08-01
description Physical mechanisms of active control of sound transmission through orthogonally two ribs stiffened double-panel structure are investigated. This is the continued work of the single rib stiffened case. For the orthogonally two ribs stiffened case, four different cluster mode groups can be coupled with each other, due to the interlaced coupling effects of the horizontal and vertical ribs. One cavity mode can couple with and transmit sound energy to any type of base plate mode of the radiating ribbed plate. Consequently, the main differences of the control mechanism, when compared with the single ribbed case, lie in two aspects. One is that a novel mechanism appears. That is, suppressing and rearranging the cavity modes simultaneously achieves the suppression of the base plate modes. The other is that rearrangement of the cavity modes to rearrange the base plate modes for achieving sound radiation cancellation almost does not appear. The reason is that all types of cavity mode can couple with any one of the base plate modes due to the coupling effects of the two ribs. There is only a need to rearrange several important cavity modes to achieve suppressing the base plate mode of the radiating ribbed plate.
topic orthogonally two ribs stiffened double-panel structure
sound transmission
active control
physical mechanisms
url https://www.mdpi.com/2076-3417/9/16/3286
work_keys_str_mv AT xiyuema activecontrolofsoundtransmissionthroughorthogonallyribstiffeneddoublepanelstructuremechanismanalysis
AT keanchen activecontrolofsoundtransmissionthroughorthogonallyribstiffeneddoublepanelstructuremechanismanalysis
AT jianxu activecontrolofsoundtransmissionthroughorthogonallyribstiffeneddoublepanelstructuremechanismanalysis
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