APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract

</i><b>Abstract: <i></b><p align="justify"> Finite difference hydrodynamic models of sinuous open channels, such as estuary or coastal waters with complex geometry, require curvilinier grid system. Cartesian models with rectangular or square grid cells are sim...

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Main Author: Berlianty <br> NIM. 224 03 011, Dessy
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/5937
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:5937
spelling id-itb.:59372007-03-13T17:34:14ZAPPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract Berlianty <br> NIM. 224 03 011, Dessy Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/5937 </i><b>Abstract: <i></b><p align="justify"> Finite difference hydrodynamic models of sinuous open channels, such as estuary or coastal waters with complex geometry, require curvilinier grid system. Cartesian models with rectangular or square grid cells are simple to apply, but require large number cells, as the cell size is determined bay cross-stream resolution. This study presents a curviliniear approach suitable for hydrodynamic model of coastal or open channel system with sinuous geometry. The approach has been employed into horizontal grid system of the 3D Princeton Ocean Model (POM). Further, the 3D hudrodynamic model with horizontal curvilinear coordinate was utilized to simulate wind driven currents in simple synthetic channels with sinuous geometry. Analytic calculations were then carried out to verify the simulation results.</p> 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 </i><b>Abstract: <i></b><p align="justify"> Finite difference hydrodynamic models of sinuous open channels, such as estuary or coastal waters with complex geometry, require curvilinier grid system. Cartesian models with rectangular or square grid cells are simple to apply, but require large number cells, as the cell size is determined bay cross-stream resolution. This study presents a curviliniear approach suitable for hydrodynamic model of coastal or open channel system with sinuous geometry. The approach has been employed into horizontal grid system of the 3D Princeton Ocean Model (POM). Further, the 3D hudrodynamic model with horizontal curvilinear coordinate was utilized to simulate wind driven currents in simple synthetic channels with sinuous geometry. Analytic calculations were then carried out to verify the simulation results.</p>
format Theses
author Berlianty <br> NIM. 224 03 011, Dessy
spellingShingle Berlianty <br> NIM. 224 03 011, Dessy
APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract
author_facet Berlianty <br> NIM. 224 03 011, Dessy
author_sort Berlianty <br> NIM. 224 03 011, Dessy
title APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract
title_short APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract
title_full APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract
title_fullStr APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract
title_full_unstemmed APPLICATION OF CURVILINEAR GRID IN 3E HYDRODYNAMICS MODEL : Abstract
title_sort application of curvilinear grid in 3e hydrodynamics model : abstract
url https://digilib.itb.ac.id/gdl/view/5937
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