Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope
Breaking waves have ability to transport large quantities of sediment and significant impact on coastal structures morphology. Hence, modeling of wave breaking is an important subject in coastal and marine engineering. In this research, the periodic wave breaking process on a plane slope is studied...
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doaj-27499dc100b64cfbb48d5e371528214b2021-02-14T08:53:22ZengIranian Association of Naval Architecture and Marine EngineeringInternational Journal of Maritime Technology2345-60002476-53332016-02-015Winter and Spring 20166376Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slopeAmin Mahmoudi0Habib Hakimzadeh1Mohammad Javad Ketabdari2Amir Etemadshahidi3Nick Cartwright4Hassan Abyn5 Assistant Professor, Faculty of Civil Engineering, Persian Gulf University Associate Professor, Faculty of Civil Engineering, Sahand University of Technology Associate Professor, Faculty of Marine Technology, Amirkabir University of Technology Griffith School of Engineering, Griffith University, Queensland,4222, Australia Griffith School of Engineering, Griffith University, Queensland,4222, Australia Assistant Professor of Naval Architecture, Persian Gulf University, Bushehr Breaking waves have ability to transport large quantities of sediment and significant impact on coastal structures morphology. Hence, modeling of wave breaking is an important subject in coastal and marine engineering. In this research, the periodic wave breaking process on a plane slope is studied experimentally and numerically. Laboratory experiments were conducted to record water surface elevation and the wave breaking process. For the current study, a space-averaged Navier–Stokes approach together with laboratory experiments has been deployed to investigate time-dependent wave breaking processes. The developed model is based on the Smoothed Particle Hydrodynamic (SPH) method; a pure Lagrangian approach; capable of handling large deformations at free surface with high accuracy. So, a Weakly Compressible version of the Smoothed Particle Hydrodynamics (WCSPH) method together with a large eddy simulation (LES) approach was used to simulate the wave breaking on a plane slope. The results of numerical simulations were compared both qualitative and quantitative with those of laboratory experiments. Overall, good agreement was found between them. Finally, it is shown that the WCSPH method provides a useful tool to investigate surf zone dynamics.http://ijmt.ir/article-1-471-en.htmlexperimental modelnumerical simulationweakly compressible smoothed particle hydrodynamicswave breakinglarge eddy simulation model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Amin Mahmoudi Habib Hakimzadeh Mohammad Javad Ketabdari Amir Etemadshahidi Nick Cartwright Hassan Abyn |
spellingShingle |
Amin Mahmoudi Habib Hakimzadeh Mohammad Javad Ketabdari Amir Etemadshahidi Nick Cartwright Hassan Abyn Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope International Journal of Maritime Technology experimental model numerical simulation weakly compressible smoothed particle hydrodynamics wave breaking large eddy simulation model |
author_facet |
Amin Mahmoudi Habib Hakimzadeh Mohammad Javad Ketabdari Amir Etemadshahidi Nick Cartwright Hassan Abyn |
author_sort |
Amin Mahmoudi |
title |
Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope |
title_short |
Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope |
title_full |
Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope |
title_fullStr |
Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope |
title_full_unstemmed |
Weakly-compressible SPH and Experimental modeling of periodic wave breaking on a plane slope |
title_sort |
weakly-compressible sph and experimental modeling of periodic wave breaking on a plane slope |
publisher |
Iranian Association of Naval Architecture and Marine Engineering |
series |
International Journal of Maritime Technology |
issn |
2345-6000 2476-5333 |
publishDate |
2016-02-01 |
description |
Breaking waves have ability to transport large quantities of sediment and significant impact on coastal structures morphology. Hence, modeling of wave breaking is an important subject in coastal and marine engineering. In this research, the periodic wave breaking process on a plane slope is studied experimentally and numerically. Laboratory experiments were conducted to record water surface elevation and the wave breaking process. For the current study, a space-averaged Navier–Stokes approach together with laboratory experiments has been deployed to investigate time-dependent wave breaking processes. The developed model is based on the Smoothed Particle Hydrodynamic (SPH) method; a pure Lagrangian approach; capable of handling large deformations at free surface with high accuracy. So, a Weakly Compressible version of the Smoothed Particle Hydrodynamics (WCSPH) method together with a large eddy simulation (LES) approach was used to simulate the wave breaking on a plane slope. The results of numerical simulations were compared both qualitative and quantitative with those of laboratory experiments. Overall, good agreement was found between them. Finally, it is shown that the WCSPH method provides a useful tool to investigate surf zone dynamics. |
topic |
experimental model numerical simulation weakly compressible smoothed particle hydrodynamics wave breaking large eddy simulation model |
url |
http://ijmt.ir/article-1-471-en.html |
work_keys_str_mv |
AT aminmahmoudi weaklycompressiblesphandexperimentalmodelingofperiodicwavebreakingonaplaneslope AT habibhakimzadeh weaklycompressiblesphandexperimentalmodelingofperiodicwavebreakingonaplaneslope AT mohammadjavadketabdari weaklycompressiblesphandexperimentalmodelingofperiodicwavebreakingonaplaneslope AT amiretemadshahidi weaklycompressiblesphandexperimentalmodelingofperiodicwavebreakingonaplaneslope AT nickcartwright weaklycompressiblesphandexperimentalmodelingofperiodicwavebreakingonaplaneslope AT hassanabyn weaklycompressiblesphandexperimentalmodelingofperiodicwavebreakingonaplaneslope |
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1724271196417032192 |