Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling

Paseban Beach is an area that has the potential for a tsunami hazard. In analyzing the tsunami hazard, accurate data and methods are essential. Therefore, this study aims to conduct a tsunami hazard analysis using the nesting method to obtain precise modeling results. This study utilizes the Delftda...

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Main Authors: Maulida Faradella, Retno Utami Agung Wiyono, Gusfan Halik
Format: Article
Language:English
Published: University of Brawijaya 2024-02-01
Series:Rekayasa Sipil
Subjects:
Online Access:https://rekayasasipil.ub.ac.id/index.php/rs/article/view/1113
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author Maulida Faradella
Retno Utami Agung Wiyono
Gusfan Halik
author_facet Maulida Faradella
Retno Utami Agung Wiyono
Gusfan Halik
author_sort Maulida Faradella
collection DOAJ
description Paseban Beach is an area that has the potential for a tsunami hazard. In analyzing the tsunami hazard, accurate data and methods are essential. Therefore, this study aims to conduct a tsunami hazard analysis using the nesting method to obtain precise modeling results. This study utilizes the Delftdashboard and Delft3D-Flow programs. The modeling of the 1994 Banyuwangi tsunami results show that the validation stage has an accuracy of 7.94%, which means it is very accurate. The tsunami modeling using the 8.7 Mw megathrust earthquake showed the tsunami wave height in Paseban Beach reached 10,25 meters with 46 minutes arrival time. The length of the tsunami inundation was measured to be 2.96 km, with a run-up height of 2.98 meters.
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spelling doaj.art-88679b92856f489d827da4fc579295342024-02-20T05:25:23ZengUniversity of BrawijayaRekayasa Sipil1978-56582502-63482024-02-01181414810.21776/ub.rekayasasipil.2024.018.01.8Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D ModelingMaulida Faradella0Retno Utami Agung Wiyono1Gusfan Halik2Civil Engineering Department, Universitas Jember, 68121, IndonesiaCivil Engineering Department, Universitas Jember, 68121, IndonesiaCivil Engineering Department, Universitas Jember, 68121, IndonesiaPaseban Beach is an area that has the potential for a tsunami hazard. In analyzing the tsunami hazard, accurate data and methods are essential. Therefore, this study aims to conduct a tsunami hazard analysis using the nesting method to obtain precise modeling results. This study utilizes the Delftdashboard and Delft3D-Flow programs. The modeling of the 1994 Banyuwangi tsunami results show that the validation stage has an accuracy of 7.94%, which means it is very accurate. The tsunami modeling using the 8.7 Mw megathrust earthquake showed the tsunami wave height in Paseban Beach reached 10,25 meters with 46 minutes arrival time. The length of the tsunami inundation was measured to be 2.96 km, with a run-up height of 2.98 meters.https://rekayasasipil.ub.ac.id/index.php/rs/article/view/1113delftdashboarddelft3d-flownestingpaseban beachtsunami
spellingShingle Maulida Faradella
Retno Utami Agung Wiyono
Gusfan Halik
Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling
Rekayasa Sipil
delftdashboard
delft3d-flow
nesting
paseban beach
tsunami
title Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling
title_full Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling
title_fullStr Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling
title_full_unstemmed Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling
title_short Tsunami Simulation in Paseban Beach Using Nesting Method on Delft3D Modeling
title_sort tsunami simulation in paseban beach using nesting method on delft3d modeling
topic delftdashboard
delft3d-flow
nesting
paseban beach
tsunami
url https://rekayasasipil.ub.ac.id/index.php/rs/article/view/1113
work_keys_str_mv AT maulidafaradella tsunamisimulationinpasebanbeachusingnestingmethodondelft3dmodeling
AT retnoutamiagungwiyono tsunamisimulationinpasebanbeachusingnestingmethodondelft3dmodeling
AT gusfanhalik tsunamisimulationinpasebanbeachusingnestingmethodondelft3dmodeling