Numerical simulation of undular bore evolution with Chezy Friction

This paper studies and simulates numerically the evolution of undular bore under the effect of damping in the framework of the perturbed extended Korteweg-de Vries equation. Here, we consider Chezy frictional term to be the damping term in the perturbed extended Korteweg-de Vries equation. Numerical...

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Main Authors: Tiong, Wei King, Chiew, Kang Leng, Tay, Kim Gaik, Ong, Chee Tiong
Format: Conference or Workshop Item
Published: 2015
Subjects:
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author Tiong, Wei King
Chiew, Kang Leng
Tay, Kim Gaik
Ong, Chee Tiong
author_facet Tiong, Wei King
Chiew, Kang Leng
Tay, Kim Gaik
Ong, Chee Tiong
author_sort Tiong, Wei King
collection ePrints
description This paper studies and simulates numerically the evolution of undular bore under the effect of damping in the framework of the perturbed extended Korteweg-de Vries equation. Here, we consider Chezy frictional term to be the damping term in the perturbed extended Korteweg-de Vries equation. Numerical simulations show that under the influence of the friction, the undular bore with thick leading wave will transform into KdV-like solitary wave as the leading wave of the undular bore. The amplitude of the “thick” leading wave will remain the same for some time even though there is dissipation effect.
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institution Universiti Teknologi Malaysia - ePrints
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spelling utm.eprints-635582017-08-16T07:18:51Z http://eprints.utm.my/63558/ Numerical simulation of undular bore evolution with Chezy Friction Tiong, Wei King Chiew, Kang Leng Tay, Kim Gaik Ong, Chee Tiong QC Physics This paper studies and simulates numerically the evolution of undular bore under the effect of damping in the framework of the perturbed extended Korteweg-de Vries equation. Here, we consider Chezy frictional term to be the damping term in the perturbed extended Korteweg-de Vries equation. Numerical simulations show that under the influence of the friction, the undular bore with thick leading wave will transform into KdV-like solitary wave as the leading wave of the undular bore. The amplitude of the “thick” leading wave will remain the same for some time even though there is dissipation effect. 2015 Conference or Workshop Item PeerReviewed Tiong, Wei King and Chiew, Kang Leng and Tay, Kim Gaik and Ong, Chee Tiong (2015) Numerical simulation of undular bore evolution with Chezy Friction. In: International Symposium on Mathematical Sciences & Computing Research (ISMSC) 2015,, 19-20 May, 2015, Perak, Malaysia. https://perak.uitm.edu.my/ismsc/2015/
spellingShingle QC Physics
Tiong, Wei King
Chiew, Kang Leng
Tay, Kim Gaik
Ong, Chee Tiong
Numerical simulation of undular bore evolution with Chezy Friction
title Numerical simulation of undular bore evolution with Chezy Friction
title_full Numerical simulation of undular bore evolution with Chezy Friction
title_fullStr Numerical simulation of undular bore evolution with Chezy Friction
title_full_unstemmed Numerical simulation of undular bore evolution with Chezy Friction
title_short Numerical simulation of undular bore evolution with Chezy Friction
title_sort numerical simulation of undular bore evolution with chezy friction
topic QC Physics
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AT chiewkangleng numericalsimulationofundularboreevolutionwithchezyfriction
AT taykimgaik numericalsimulationofundularboreevolutionwithchezyfriction
AT ongcheetiong numericalsimulationofundularboreevolutionwithchezyfriction