Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis

Our work aims to find a general solution for the vibrational energy flow through a plane network of beams on the basis of an energy flow analysis. A joint between two semi-infinite beams are modeled by three sets of springs and dashpots. Thus, the results can incorporate the case of complaint and no...

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Main Authors: Jee-Hun Song, Suk-Yoon Hong
Format: Article
Language:English
Published: Wiley 2007-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2007/273472
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author Jee-Hun Song
Suk-Yoon Hong
author_facet Jee-Hun Song
Suk-Yoon Hong
author_sort Jee-Hun Song
collection DOAJ
description Our work aims to find a general solution for the vibrational energy flow through a plane network of beams on the basis of an energy flow analysis. A joint between two semi-infinite beams are modeled by three sets of springs and dashpots. Thus, the results can incorporate the case of complaint and non-conservative in all the three degrees of freedom. In the cases of finite coupled structures connected at a certain angle, the derived non-conservative joints and developed wave energy equation were applied. The joint properties, the frequency, the coupling angle, and the internal loss factor were changed to evaluate the proposed methods for predicting medium-to-high frequency vibrational energy and intensity distributions.
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spelling doaj-art-0ca7206dabf14b899fd13aff7e3ba4e42025-02-03T06:44:40ZengWileyShock and Vibration1070-96221875-92032007-01-01141152810.1155/2007/273472Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow AnalysisJee-Hun Song0Suk-Yoon Hong1Department of Naval Architecture and Ocean Engineering, Seoul National University, #56-1, Shinlim-dong, Kwanak-gu, Seoul 151-742, KoreaDepartment of Naval Architecture and Ocean Engineering, Seoul National University, #56-1, Shinlim-dong, Kwanak-gu, Seoul 151-742, KoreaOur work aims to find a general solution for the vibrational energy flow through a plane network of beams on the basis of an energy flow analysis. A joint between two semi-infinite beams are modeled by three sets of springs and dashpots. Thus, the results can incorporate the case of complaint and non-conservative in all the three degrees of freedom. In the cases of finite coupled structures connected at a certain angle, the derived non-conservative joints and developed wave energy equation were applied. The joint properties, the frequency, the coupling angle, and the internal loss factor were changed to evaluate the proposed methods for predicting medium-to-high frequency vibrational energy and intensity distributions.http://dx.doi.org/10.1155/2007/273472
spellingShingle Jee-Hun Song
Suk-Yoon Hong
Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis
Shock and Vibration
title Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis
title_full Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis
title_fullStr Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis
title_full_unstemmed Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis
title_short Development of Non-Conservative Joints in Beam Networks for Vibration Energy Flow Analysis
title_sort development of non conservative joints in beam networks for vibration energy flow analysis
url http://dx.doi.org/10.1155/2007/273472
work_keys_str_mv AT jeehunsong developmentofnonconservativejointsinbeamnetworksforvibrationenergyflowanalysis
AT sukyoonhong developmentofnonconservativejointsinbeamnetworksforvibrationenergyflowanalysis