Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method

In this paper wave transformation in a submerged sloped breakwater and its hydraulic performance was simulated by developing a numerical model in Fortran. The code was established by combining porous flow and a two-phase model using VOF method. Modified Navier-Stokes and k-ε equations implemented to...

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Main Authors: Saeed Booshi, Mohammad Javad Ketabdari
Format: Article
Language:English
Published: Iranian Association of Naval Architecture and Marine Engineering 2016-08-01
Series:International Journal of Maritime Technology
Subjects:
Online Access:http://ijmt.ir/article-1-535-en.html
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spelling doaj-37c500bcfce4420a92cefd81269324282021-02-14T08:53:31ZengIranian Association of Naval Architecture and Marine EngineeringInternational Journal of Maritime Technology2345-60002476-53332016-08-016Summer and Autumn 20163140Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell MethodSaeed Booshi0Mohammad Javad Ketabdari1 Amirkabir University of Technology Amirkabir University of Technology In this paper wave transformation in a submerged sloped breakwater and its hydraulic performance was simulated by developing a numerical model in Fortran. The code was established by combining porous flow and a two-phase model using VOF method. Modified Navier-Stokes and k-ε equations implemented to the model to simulate the flow in porous media. Cut cell method was modified to simulate fluid transformation from sloped porous media’s boundary in more accurate way and then applied in the governing equations to increase the accuracy of the model. The validity of the present program was investigated based on the comparisons with the available experimental data. The results showed that increasing of inertia coefficient and wave period and also reduction of porosity lead to some phase lags between the incident and transmitted waves. Furthermore parametric studies were performed on effect of submerged porous breakwater crest widths and heights on transmitted waves leading to useful results for design criteria.http://ijmt.ir/article-1-535-en.htmlsubmerged rubble moundbreakwaterporous mediacut-cell porous methodvof methodtransmitted waves
collection DOAJ
language English
format Article
sources DOAJ
author Saeed Booshi
Mohammad Javad Ketabdari
spellingShingle Saeed Booshi
Mohammad Javad Ketabdari
Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method
International Journal of Maritime Technology
submerged rubble mound
breakwater
porous media
cut-cell porous method
vof method
transmitted waves
author_facet Saeed Booshi
Mohammad Javad Ketabdari
author_sort Saeed Booshi
title Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method
title_short Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method
title_full Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method
title_fullStr Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method
title_full_unstemmed Parametric Study on Wave Interaction with a Porous Submerged Rubble Mound Breakwater Using Modified N-S Equations and Cut-Cell Method
title_sort parametric study on wave interaction with a porous submerged rubble mound breakwater using modified n-s equations and cut-cell method
publisher Iranian Association of Naval Architecture and Marine Engineering
series International Journal of Maritime Technology
issn 2345-6000
2476-5333
publishDate 2016-08-01
description In this paper wave transformation in a submerged sloped breakwater and its hydraulic performance was simulated by developing a numerical model in Fortran. The code was established by combining porous flow and a two-phase model using VOF method. Modified Navier-Stokes and k-ε equations implemented to the model to simulate the flow in porous media. Cut cell method was modified to simulate fluid transformation from sloped porous media’s boundary in more accurate way and then applied in the governing equations to increase the accuracy of the model. The validity of the present program was investigated based on the comparisons with the available experimental data. The results showed that increasing of inertia coefficient and wave period and also reduction of porosity lead to some phase lags between the incident and transmitted waves. Furthermore parametric studies were performed on effect of submerged porous breakwater crest widths and heights on transmitted waves leading to useful results for design criteria.
topic submerged rubble mound
breakwater
porous media
cut-cell porous method
vof method
transmitted waves
url http://ijmt.ir/article-1-535-en.html
work_keys_str_mv AT saeedbooshi parametricstudyonwaveinteractionwithaporoussubmergedrubblemoundbreakwaterusingmodifiednsequationsandcutcellmethod
AT mohammadjavadketabdari parametricstudyonwaveinteractionwithaporoussubmergedrubblemoundbreakwaterusingmodifiednsequationsandcutcellmethod
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