Boussinesq cut-cell model for wave scattering from cylinder in shallow water

This paper presents a Cartesian cut-cell Boussinesq model for simulating nonlinear wave interaction with a curved structure. The Cartesian cut-cell technique permits accurate boundary-fitting of complicated, curved geometries in the numerical domain. A Godunov-type shock capturing scheme is used to...

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Main Authors: Zang, J, Ning, D, Liu, S, Liang, Q, Taylor, P, Taylor, R, Borthwick, A
Format: Journal article
Language:English
Published: 2007
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author Zang, J
Ning, D
Liu, S
Liang, Q
Taylor, P
Taylor, R
Borthwick, A
author_facet Zang, J
Ning, D
Liu, S
Liang, Q
Taylor, P
Taylor, R
Borthwick, A
author_sort Zang, J
collection OXFORD
description This paper presents a Cartesian cut-cell Boussinesq model for simulating nonlinear wave interaction with a curved structure. The Cartesian cut-cell technique permits accurate boundary-fitting of complicated, curved geometries in the numerical domain. A Godunov-type shock capturing scheme is used to solve the Boussinesq-type equations in hyperbolic form in order to provide accurate predictions of strongly nonlinear wave interactions with curved structures in shallow water. The numerical model is used to simulate the interaction of a focused wave with a circular cylinder, and excellent agreement is obtained with data from laboratory experiments conducted in a wave basin. Copyright © by The International Society of Offshore and Polar Engineers.
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spelling oxford-uuid:e5cb6e43-70d9-4e45-a202-7a909d3270aa2022-03-27T10:26:33ZBoussinesq cut-cell model for wave scattering from cylinder in shallow waterJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:e5cb6e43-70d9-4e45-a202-7a909d3270aaEnglishSymplectic Elements at Oxford2007Zang, JNing, DLiu, SLiang, QTaylor, PTaylor, RBorthwick, AThis paper presents a Cartesian cut-cell Boussinesq model for simulating nonlinear wave interaction with a curved structure. The Cartesian cut-cell technique permits accurate boundary-fitting of complicated, curved geometries in the numerical domain. A Godunov-type shock capturing scheme is used to solve the Boussinesq-type equations in hyperbolic form in order to provide accurate predictions of strongly nonlinear wave interactions with curved structures in shallow water. The numerical model is used to simulate the interaction of a focused wave with a circular cylinder, and excellent agreement is obtained with data from laboratory experiments conducted in a wave basin. Copyright © by The International Society of Offshore and Polar Engineers.
spellingShingle Zang, J
Ning, D
Liu, S
Liang, Q
Taylor, P
Taylor, R
Borthwick, A
Boussinesq cut-cell model for wave scattering from cylinder in shallow water
title Boussinesq cut-cell model for wave scattering from cylinder in shallow water
title_full Boussinesq cut-cell model for wave scattering from cylinder in shallow water
title_fullStr Boussinesq cut-cell model for wave scattering from cylinder in shallow water
title_full_unstemmed Boussinesq cut-cell model for wave scattering from cylinder in shallow water
title_short Boussinesq cut-cell model for wave scattering from cylinder in shallow water
title_sort boussinesq cut cell model for wave scattering from cylinder in shallow water
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AT ningd boussinesqcutcellmodelforwavescatteringfromcylinderinshallowwater
AT lius boussinesqcutcellmodelforwavescatteringfromcylinderinshallowwater
AT liangq boussinesqcutcellmodelforwavescatteringfromcylinderinshallowwater
AT taylorp boussinesqcutcellmodelforwavescatteringfromcylinderinshallowwater
AT taylorr boussinesqcutcellmodelforwavescatteringfromcylinderinshallowwater
AT borthwicka boussinesqcutcellmodelforwavescatteringfromcylinderinshallowwater