Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea

The morphology of the Cimanuk Delta at the North Java Sea has changed rapidly over the last two decades. The annual sediment deposition is about two million cubic meters (Yuanita and Tingsanchali, [1]). The large-scale ocean hydrodynamics and sediment transport model MuSed3D (Muin, [2]) was applied...

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Main Authors: Muslim Muin, Krisnaldi Idris, Nita Yuanita
Format: Article
Language:English
Published: ITB Journal Publisher 2016-08-01
Series:Journal of Engineering and Technological Sciences
Subjects:
Online Access:http://journals.itb.ac.id/index.php/jets/article/view/2567/1283
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spelling doaj-3a876ab850774972937e56bbc729c5b52020-11-25T03:29:22ZengITB Journal PublisherJournal of Engineering and Technological Sciences2337-57792338-55022016-08-0148330131910.5614/j.eng.technol.sci.2016.48.3.5Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java SeaMuslim Muin0Krisnaldi Idris1Nita Yuanita2Ocean Engineering Research Group, Faculty of Civil and Environmental Engineering Institut Teknologi Bandung, IndonesiaOcean Engineering Research Group, Faculty of Civil and Environmental Engineering Institut TeknOcean Engineering Research Group, Faculty of Civil and Environmental Engineering Institut Teknologi Bandung, Indonesiaologi Bandung,Ocean Engineering Research Group, Faculty of Civil and Environmental Engineering Institut Teknologi Bandung, IndonesiaThe morphology of the Cimanuk Delta at the North Java Sea has changed rapidly over the last two decades. The annual sediment deposition is about two million cubic meters (Yuanita and Tingsanchali, [1]). The large-scale ocean hydrodynamics and sediment transport model MuSed3D (Muin, [2]) was applied to the North Java Sea to simulate suspended sediment transport at the study site. A potential offshore structure was positioned at approximately 30 km from the Cimanuk Delta. The result of the large-scale model was calibrated using observation data and Landsat satellite image interpretation. The agreement between the modeling results and the observations was excellent. It was found that the critical shear stresses for erosion and deposition were 0.1 Pa and 0.05 Pa respectively. An empirical formula was further utilized to assess the local scouring at the potential offshore structure site in a small-scale domain and under extreme conditions.http://journals.itb.ac.id/index.php/jets/article/view/2567/1283CimanukmodelMuSed3Dnon-orthogonal boundary fittedocean hydrodynamicssediment transport
collection DOAJ
language English
format Article
sources DOAJ
author Muslim Muin
Krisnaldi Idris
Nita Yuanita
spellingShingle Muslim Muin
Krisnaldi Idris
Nita Yuanita
Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea
Journal of Engineering and Technological Sciences
Cimanuk
model
MuSed3D
non-orthogonal boundary fitted
ocean hydrodynamics
sediment transport
author_facet Muslim Muin
Krisnaldi Idris
Nita Yuanita
author_sort Muslim Muin
title Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea
title_short Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea
title_full Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea
title_fullStr Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea
title_full_unstemmed Application of Large-Scale 3D Non-Orthogonal Boundary Fitted Sediment Transport Model and Small-Scale Approach for Offshore Structure in Cimanuk Delta North Java Sea
title_sort application of large-scale 3d non-orthogonal boundary fitted sediment transport model and small-scale approach for offshore structure in cimanuk delta north java sea
publisher ITB Journal Publisher
series Journal of Engineering and Technological Sciences
issn 2337-5779
2338-5502
publishDate 2016-08-01
description The morphology of the Cimanuk Delta at the North Java Sea has changed rapidly over the last two decades. The annual sediment deposition is about two million cubic meters (Yuanita and Tingsanchali, [1]). The large-scale ocean hydrodynamics and sediment transport model MuSed3D (Muin, [2]) was applied to the North Java Sea to simulate suspended sediment transport at the study site. A potential offshore structure was positioned at approximately 30 km from the Cimanuk Delta. The result of the large-scale model was calibrated using observation data and Landsat satellite image interpretation. The agreement between the modeling results and the observations was excellent. It was found that the critical shear stresses for erosion and deposition were 0.1 Pa and 0.05 Pa respectively. An empirical formula was further utilized to assess the local scouring at the potential offshore structure site in a small-scale domain and under extreme conditions.
topic Cimanuk
model
MuSed3D
non-orthogonal boundary fitted
ocean hydrodynamics
sediment transport
url http://journals.itb.ac.id/index.php/jets/article/view/2567/1283
work_keys_str_mv AT muslimmuin applicationoflargescale3dnonorthogonalboundaryfittedsedimenttransportmodelandsmallscaleapproachforoffshorestructureincimanukdeltanorthjavasea
AT krisnaldiidris applicationoflargescale3dnonorthogonalboundaryfittedsedimenttransportmodelandsmallscaleapproachforoffshorestructureincimanukdeltanorthjavasea
AT nitayuanita applicationoflargescale3dnonorthogonalboundaryfittedsedimenttransportmodelandsmallscaleapproachforoffshorestructureincimanukdeltanorthjavasea
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