DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED

Tall ocean waves erode shores and damage manmade structures. Mangrove forests, which often grow on muddy coasts, can mitigate these harms by reducing wave heights. Existing studies in the literature focus on mud-water interactions or water wave interactions with submerged vegetation but not do no...

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Main Author: Mauditra Aulia Matin, Alvedian
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/55141
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:55141
spelling id-itb.:551412021-06-15T08:37:05ZDAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED Mauditra Aulia Matin, Alvedian Indonesia Final Project Wave attenuation, shallow water equations, two-layer fluid model, wavemud interaction, porous medium. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/55141 Tall ocean waves erode shores and damage manmade structures. Mangrove forests, which often grow on muddy coasts, can mitigate these harms by reducing wave heights. Existing studies in the literature focus on mud-water interactions or water wave interactions with submerged vegetation but not do not investigate the overall effect of both. This analytical and numerical study investigates the combined effects of mud and vegetation on wave height. A model based on the linearized shallow water equations is formulated to describe wave motion over two incompressible fluid layers. The wave’s dispersion relation is derived for two lower fluid layer types: inviscid and viscous. A numerical scheme is constructed using a finite volume method on a staggered grid. Wave attenuation due to the presence of a lower fluid layer is measured using numerical simulations based on the aforementioned scheme. Results are validated by comparing numerical results to wave height reduction values obtained from the analytical solution. The model is then extended to take into account the presence of a vegetation patch (porous medium) by adding a friction term. Using the same finite volume method, a numerical scheme is constructed and simulations are run to obtain wave height reduction values. The results are used to analyze the effectiveness of mangrove forests in coasts possessing mud banks as coastal defense structures. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Tall ocean waves erode shores and damage manmade structures. Mangrove forests, which often grow on muddy coasts, can mitigate these harms by reducing wave heights. Existing studies in the literature focus on mud-water interactions or water wave interactions with submerged vegetation but not do not investigate the overall effect of both. This analytical and numerical study investigates the combined effects of mud and vegetation on wave height. A model based on the linearized shallow water equations is formulated to describe wave motion over two incompressible fluid layers. The wave’s dispersion relation is derived for two lower fluid layer types: inviscid and viscous. A numerical scheme is constructed using a finite volume method on a staggered grid. Wave attenuation due to the presence of a lower fluid layer is measured using numerical simulations based on the aforementioned scheme. Results are validated by comparing numerical results to wave height reduction values obtained from the analytical solution. The model is then extended to take into account the presence of a vegetation patch (porous medium) by adding a friction term. Using the same finite volume method, a numerical scheme is constructed and simulations are run to obtain wave height reduction values. The results are used to analyze the effectiveness of mangrove forests in coasts possessing mud banks as coastal defense structures.
format Final Project
author Mauditra Aulia Matin, Alvedian
spellingShingle Mauditra Aulia Matin, Alvedian
DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED
author_facet Mauditra Aulia Matin, Alvedian
author_sort Mauditra Aulia Matin, Alvedian
title DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED
title_short DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED
title_full DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED
title_fullStr DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED
title_full_unstemmed DAMPING OF SURFACEWAVES PROPAGATING OVER A MUD BED
title_sort damping of surfacewaves propagating over a mud bed
url https://digilib.itb.ac.id/gdl/view/55141
_version_ 1822274164354973696