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The application of three-dimensional hydroelastic analysis of ship structures in Pekeris hydro-acoustic waveguide environment
作者姓名:Ming-Song Zou  You-Sheng Wu  Yan-Min Liu
摘    要:The hydroelastic analysis and sonoelastic analysis methods are incorporated with the Green's function of the Pekeris ocean hydro-acoustic waveguide model to produce a three-dimensional sonoelastic analysis method for ships in the ocean hydro-acoustic environment. The seabed condition is represented by a penetrable boundary of prescribed density and sound speed. This method is employed in this paper to predict the vibration and acoustic radiation of a 1 500 t Small Water Area Twin Hull (SWATH) ship in shallow sea acoustic environment. The wet resonant frequencies and radiation sound source levels are predicted and compared with the measured results of the ship in trial.

关 键 词:水弹性分析  水声环境  船体结构  三维  声波导  小水线面双体船  应用  SWATH

The application of three-dimensional hydroelastic analysis of ship structures in Pekeris hydro-acoustic waveguide environment
Ming-Song Zou,You-Sheng Wu,Yan-Min Liu.The application of three-dimensional hydroelastic analysis of ship structures in Pekeris hydro-acoustic waveguide environment[J].Acta Mechanica Sinica,2014,30(1):59-66.
Authors:Ming-Song Zou  You-Sheng Wu  Yan-Min Liu
Institution:1. China Ship Scientific Research Center, 214082, Wuxi, China
Abstract:The hydroelastic analysis and sonoelastic analysis methods are incorporatedwith the Green’s function of the Pekeris ocean hydro-acoustic waveguide model to produce a three-dimensional sonoelastic analysis method for ships in the ocean hydro-acoustic environment. The seabed condition is represented by a penetrable boundary of prescribed density and sound speed. This method is employed in this paper to predict the vibration and acoustic radiation of a 1 500 t Small Water Area Twin Hull (SWATH) ship in shallow sea acoustic environment. The wet resonant frequencies and radiation sound source levels are predicted and compared with the measured results of the ship in trial.  src=
Keywords:Hydroelasticity  Sonoelasticity  Acoustic waves  Shallow sea  Free surface efect  Seabed efect  SWATH ship
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