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Wave Scattering by Small Undulation on the Porous Bottom of an Ocean in the Presence of Surface Tension
Author(s) -
Srikumar Panda,
S. S. Samantaray,
S. C. Martha
Publication year - 2012
Publication title -
isrn oceanography
Language(s) - English
Resource type - Journals
ISSN - 2090-8989
DOI - 10.5402/2013/504879
Subject(s) - scattering , porosity , reflection (computer programming) , surface (topology) , surface tension , geology , surface wave , fourier transform , wind wave , geometry , materials science , mineralogy , mechanics , optics , mathematical analysis , physics , mathematics , thermodynamics , geotechnical engineering , computer science , oceanography , programming language
The scattering of incident surface water waves due to small bottom undulation on the porous bed of a laterally unbounded ocean in the presence of surface tension at the free surface is investigated within the framework of two-dimensional linearized water wave theory. Perturbation analysis in conjunction with the Fourier transform technique is employed to derive the first-order reflection and transmission coefficients in terms of integrals involving the shape function () representing the bottom undulation. One special type of bottom topography is considered as an example and the related coefficients are determined in detail. These coefficients are presented in graphical forms. The theoretical observations are validated computationally. The results for the problem involving scattering of water waves by bottom deformations on an impermeable ocean bed are obtained as a particular case.

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