Cloaking of a vertical cylinder in waves using variable bathymetry

Author:

Porter R.,Newman J. N.

Abstract

AbstractThe paper describes a process which allows a vertical circular cylinder subject to plane monochromatic surface gravity waves to appear invisible to the far-field observer. This is achieved by surrounding the cylinder with an annular region of variable bathymetry. Two approaches are taken to investigate this effect. First a mild-slope approximation is applied to the governing linearised three-dimensional water wave equations to formulate a depth-averaged two-dimensional wave equation with varying wavenumber over the variable bathmetry. This is then solved by formulating a domain integral equation, solved numerically by discretisation. For a given set of geometrical and wave parameters, the bathymetry is selected by a numerical optimisation process and it is shown that the scattering cross-section is reduced towards zero with increasing refinement of the bathymetry. A fully three-dimensional boundary-element method, based on the WAMIT solver (see www.wamit.com) but adapted here to allow for depressions in the bed, is used to assess the accuracy of the mild-slope results and then further numerically optimise the bathymetry towards a cloaking structure. Numerical results provide strong evidence that perfect cloaking is possible for the fully three-dimensional problem. One practical application of the results is that cloaking implies a reduced mean drift force on the cylinder.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference29 articles.

1. One path to acoustic cloaking

2. Pinkster, J. A. 2011 A multi-domain approach in 3-D diffraction calculations 30th International Conference on Ocean, Offshore and Arctic Engineering, Rotterdam, Netherlands. OMAE2011-49414, pp. 355–364.

3. An alternative dispersion equation for water waves over an inclined bed

4. Kurniawan, A.  & Moan, T. 2012 Multi-objective optimization of a wave energy absorber geometry. In Proceedings of 27th International Workshop on Water Waves and Floating Bodies, Copenhagen, Denmark.

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