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A coupled-mode sound propagation model with complex effective depth (2014 No.4)
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Update time: 2014/12/11
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TitleA coupled-mode sound propagation model with complex effective depth (2014 No.4) 

AuthorMO Yaxiao; PIAO Shengchun; ZHANG Haigang; LI Li 

AbstractA coupled-mode sound propagation model with complex effective depth is presented,in order to involve the effect of branch line integral for acoustic field in a range-dependent waveguide.The equations of motion and continuity are used to obtain the coupled equations,which satisfy boundary conditions in the waveguide with varying topography and contain one coupling matrix.Meanwhile,the couplings between discrete and continuous spectrum are dealt with based on complex effective depth theory.Numerical simulations show that the accuracy of transmission loss is improved by the coupled mode model when eigenvalues of trapped modes are located near the branch point.The acoustic field in a non-horizontally stratified waveguide can be calculated efficiently and accurately by this model,and the energy corresponding to trapped modes,leaky modes and branch line integral can be considered adequately. 

 
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