MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS

The problem of wave run-up is an important issue related to the tsunami disaster. When a large tsunami wave hits the coast, it can propagate far inland and reach a certain run-up height. Some research results suggest that in the bay area, the waves achieve a higher run-up than the usual sloping b...

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Main Author: Mene Risriani, Vania
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/54811
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:54811
spelling id-itb.:548112021-06-05T14:14:58ZMODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS Mene Risriani, Vania Indonesia Theses Saint-Venant equation, conservative scheme, U-shaped bays, shoaling, maximum of run-up wave. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/54811 The problem of wave run-up is an important issue related to the tsunami disaster. When a large tsunami wave hits the coast, it can propagate far inland and reach a certain run-up height. Some research results suggest that in the bay area, the waves achieve a higher run-up than the usual sloping beaches. Our study here uses the Saint-Venant equations to model the wave dynamics in the bay, while numerically we use the momentum conserving staggered grid (abbreviated as the MCS) scheme. In this thesis, the problem of shoaling and wave run-up in two types of bays, namely Bm and B m bays, were examined. Our numerical results show a good fit when compared to the analytical solutions in the literature. Therefore it can be concluded that the MCS scheme is good and accurate for modeling wave run-up events in the bay. 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 The problem of wave run-up is an important issue related to the tsunami disaster. When a large tsunami wave hits the coast, it can propagate far inland and reach a certain run-up height. Some research results suggest that in the bay area, the waves achieve a higher run-up than the usual sloping beaches. Our study here uses the Saint-Venant equations to model the wave dynamics in the bay, while numerically we use the momentum conserving staggered grid (abbreviated as the MCS) scheme. In this thesis, the problem of shoaling and wave run-up in two types of bays, namely Bm and B m bays, were examined. Our numerical results show a good fit when compared to the analytical solutions in the literature. Therefore it can be concluded that the MCS scheme is good and accurate for modeling wave run-up events in the bay.
format Theses
author Mene Risriani, Vania
spellingShingle Mene Risriani, Vania
MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS
author_facet Mene Risriani, Vania
author_sort Mene Risriani, Vania
title MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS
title_short MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS
title_full MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS
title_fullStr MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS
title_full_unstemmed MODELLING AND SIMULATION OF WAVE RUN-UP IN U-SHAPED BAYS
title_sort modelling and simulation of wave run-up in u-shaped bays
url https://digilib.itb.ac.id/gdl/view/54811
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