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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/20841
Title: An analytical solution for wave transformation over axi-symmetric topography
Authors: San Sieu Cuong
Jen-Yi Chang
Chia-Cheng Tsai 
Wan-Rong Chou
Keywords: general axi-symmetric topography;mild-slope equation;submerged truncated shoal;wave refraction
Issue Date: Dec-2019
Publisher: Springer Nature
Journal Volume: 33
Journal Issue: 6
Start page/Pages: 694–703
Source: China Ocean Engineering
Abstract: 
The present study considers wave scattering phenomena around a cylindrical island mounted on a general axi-symmetric topography or a general submerged truncated axi-symmetric shoal based on the mild-slope equation. The method of separation of variables and Taylor series expansion are invoked to find the approximate solution to the variable water depth region which varies proportionally to an arbitrary power of radial distance. Validations against the solutions for the combined wave refraction and diffraction around a cylindrical island mounted on a paraboloidal shoal of Liu et al. in 2004 and the scattering and trapping of wave energy by a submerged truncated paraboloidal shoal of Lin and Liu in 2007 show excellent agreements as the power of radial distance being equal to two. For the solutions of wave refraction and diffraction around a cylindrical island mounted on a shoal with depth proportionally to an arbitrary power of radial distance, good agreements with Zhai et al.’s (2013) solutions are demonstrated. Since the robustness of the assumption of a general axi-symmetric geometry based on an arbitrary power variability of the radial distance, the present solution can be very conveniently employed to investigate the effects of bottom topography on wave scattering and trapping patterns.
URI: http://scholars.ntou.edu.tw/handle/123456789/20841
DOI: 10.1007/s13344-019-0067-8
Appears in Collections:海洋工程科技學士學位學程(系)

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