Diffraction of a spherical acoustic wave due to the coupling of pressure release and absorbing half planes in a moving fluid

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We investigate the diffraction of a spherical acoustic wave (emanating due to a point source) from the coupling of a pressure release half plane characterized by zero impedance (soft half plane) and an absorbing (locally reacting) half plane satisfying Myers’ impedance condition in a moving fluid. Myers’ condition (a generalization of Ingard’s impedance condition) is now the accepted form of the boundary condition for impedance barriers with flow and yields a correct form of the diffracted field. The method of solution is based on the Wiener–Hopf technique and asymptotic approximation methods.

论文关键词:Diffraction,Coupling of half planes,Wiener–Hopf technique

论文评审过程:Available online 8 January 2007.

论文官网地址:https://doi.org/10.1016/j.amc.2006.11.051