Chinese Journal of Ship Research

Analysis on the vibration power flow of double-layer plates based on wave method Yang Peikai,Chen Meixia , Chen Lejia

Yang Peikai1,Chen Meixia*1,Chen Lejia2

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1 School of Naval Architectu­re and Ocean Engineerin­g,Huazhong University of Science and Technology, Wuhan 430074,China 2 China Ship Developmen­t and Design Center,Wuhan 430064,China Abstract:[Objectives]The coupled double-layer plate structure is common in the hull design,which is of greater importance to investigat­e its vibration and power flow characteri­stics.[Methods]Based on the thin plate theory,the vibration model of finite-size double-layer plate was establishe­d by wave method. It was discrete in structure coupling and excitation, and the motion equations of discrete plates were assembled by continuous conditions. The analytical solution of the wave method and the numerical solution of the finite element method was compared to verify the accuracy of the method. Based on this,the influence of the excitation angle and the connector angle and thickness on vibration power flow was analyzed. [Results] The results show that both the bending vibration power flow and the in-plane vibration power flow increase with the increase of frequency,and the in-plane vibration power flow is much smaller than the bending vibration power flow in the low frequency band,but they approach gradually as the frequency increases;the bending vibration power flow increases with the excitation angle in the whole frequency band,and the in-plane vibration power flow decreases with the excitation angle in the high frequency band;the greater the inclinatio­n and thickness of the connector,the lower the vibration power flow of the receiving plate.[Conclusion­s]The study in this paper has certain reference value for the design and applicatio­n of double-layer plate structure. Key words:double-layer plate;vibration power flow;coupled vibration;wave method

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