EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND

This study shows the validation of a new numerical scheme with hydraulic experiment. The proposed scheme is a new computational scheme to solve shallow-water equations for surface waves shoaling on a slope. Experiment was carried out in a wave tank set on an oscillating bed, which can be moved, unif...

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Hauptverfasser: Abdul Aziz, Md., Us Samad, Md Sohail, Mahamud, Upal, Nurul Huda, Md
Format: Artikel
Sprache:Englisch
Veröffentlicht: 2015
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Online-Zugang:http://hdl.handle.net/123456789/191
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author Abdul Aziz, Md.
Us Samad, Md Sohail
Mahamud, Upal
Nurul Huda, Md
author_browse Abdul Aziz, Md.
Mahamud, Upal
Nurul Huda, Md
Us Samad, Md Sohail
author_facet Abdul Aziz, Md.
Us Samad, Md Sohail
Mahamud, Upal
Nurul Huda, Md
author_sort Abdul Aziz, Md.
collection DSpace
description This study shows the validation of a new numerical scheme with hydraulic experiment. The proposed scheme is a new computational scheme to solve shallow-water equations for surface waves shoaling on a slope. Experiment was carried out in a wave tank set on an oscillating bed, which can be moved, uniformly equal in both directions. Used flume had a flat bed of 50.5 cm and having a constant slope of 11.30 in one end whereas the other end is fixed with a vertical wall. As initial condition, water depth was 2cm, wave period was 3.5 s and the movement of the oscillating bed was 6 cm. From the comparisons of the time variation of the moving boundary and the water level along the tank, numerical computation was found to provide good agreement with laboratory experiments.
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spelling oai:localhost:123456789-1912015-09-02T08:36:56Z EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND Abdul Aziz, Md. Us Samad, Md Sohail Mahamud, Upal Nurul Huda, Md Moving boundary, Numerical Computation, Wave Shoaling, Hydraulic experiment This study shows the validation of a new numerical scheme with hydraulic experiment. The proposed scheme is a new computational scheme to solve shallow-water equations for surface waves shoaling on a slope. Experiment was carried out in a wave tank set on an oscillating bed, which can be moved, uniformly equal in both directions. Used flume had a flat bed of 50.5 cm and having a constant slope of 11.30 in one end whereas the other end is fixed with a vertical wall. As initial condition, water depth was 2cm, wave period was 3.5 s and the movement of the oscillating bed was 6 cm. From the comparisons of the time variation of the moving boundary and the water level along the tank, numerical computation was found to provide good agreement with laboratory experiments. R&D Wing, MIST 2015-08-31T03:03:08Z 2015-08-31T03:03:08Z 2015-08-31 Article 1999-2009 http://hdl.handle.net/123456789/191 en MIST Journal of Science and Technology;Volume 1, Number 1, February 2009 application/pdf
spellingShingle Moving boundary, Numerical Computation, Wave Shoaling, Hydraulic experiment
Abdul Aziz, Md.
Us Samad, Md Sohail
Mahamud, Upal
Nurul Huda, Md
EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND
title EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND
title_full EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND
title_fullStr EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND
title_full_unstemmed EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND
title_short EXPERIMENTAL VERIFICATION OF THE INSIDE INTEGRATION METHOD (IIM) FOR THE SIMULATION OF SHALLOW WATER FLOW RUNNING ONTO A SLOPING GROUND
title_sort experimental verification of the inside integration method iim for the simulation of shallow water flow running onto a sloping ground
topic Moving boundary, Numerical Computation, Wave Shoaling, Hydraulic experiment
url http://hdl.handle.net/123456789/191
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