Smooth Particle Hydrodynamics Study of Sediment Profile Erosion

AB - A sediment profile erosion with interaction of water which moving with wave generator are model in three-dimensional (3D) by using numerical method Smooth Particle Hydrodynamics (SPH). The code is constructed using SPH formulation from Monaghan and both sediment and water are modelled as weakl...

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Main Authors: Azman, A., Zawawi, M.H., Radzi, M.R.M., Abas, A., Aziz, N.A.
Format: Conference Paper
Language:English
Published: 2020
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spelling my.uniten.dspace-154642020-09-11T04:11:41Z Smooth Particle Hydrodynamics Study of Sediment Profile Erosion Azman, A. Zawawi, M.H. Radzi, M.R.M. Abas, A. Aziz, N.A. AB - A sediment profile erosion with interaction of water which moving with wave generator are model in three-dimensional (3D) by using numerical method Smooth Particle Hydrodynamics (SPH). The code is constructed using SPH formulation from Monaghan and both sediment and water are modelled as weakly compressible viscous fluids. The wave generator is set with a constant sinewave of 0.24sin(2.6πt). The sediment model with slope angle 36.464° is constructed in Solidworks with boundary length of 1206 mm, width of 454 mm and height of 463 mm. Meanwhile, the model is simulated in period of 15s. A sensitivity analysis is performed in order to add degree of trustiness to the results. The impact of generated wave to the sediment profile is analysed. The result show that the sediment starts eroded at 3 s. Afterwards, the sediment continued eroded whereby the sediment starts to move from the top region to lower region. This phenomenon due to swash and backwash of the wave that being generated by wave generator. Thus, the results show that the sediment erosion successfully simulated by using SPH. © Published under licence by IOP Publishing Ltd. 2020-09-11T04:09:37Z 2020-09-11T04:09:37Z 2019-12 Conference Paper 10.1088/1757-899X/815/1/012022 en 2019 3rd International Conference on Vibration, Sound and System Dynamics, ICVSSD 2019
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description AB - A sediment profile erosion with interaction of water which moving with wave generator are model in three-dimensional (3D) by using numerical method Smooth Particle Hydrodynamics (SPH). The code is constructed using SPH formulation from Monaghan and both sediment and water are modelled as weakly compressible viscous fluids. The wave generator is set with a constant sinewave of 0.24sin(2.6πt). The sediment model with slope angle 36.464° is constructed in Solidworks with boundary length of 1206 mm, width of 454 mm and height of 463 mm. Meanwhile, the model is simulated in period of 15s. A sensitivity analysis is performed in order to add degree of trustiness to the results. The impact of generated wave to the sediment profile is analysed. The result show that the sediment starts eroded at 3 s. Afterwards, the sediment continued eroded whereby the sediment starts to move from the top region to lower region. This phenomenon due to swash and backwash of the wave that being generated by wave generator. Thus, the results show that the sediment erosion successfully simulated by using SPH. © Published under licence by IOP Publishing Ltd.
format Conference Paper
author Azman, A.
Zawawi, M.H.
Radzi, M.R.M.
Abas, A.
Aziz, N.A.
spellingShingle Azman, A.
Zawawi, M.H.
Radzi, M.R.M.
Abas, A.
Aziz, N.A.
Smooth Particle Hydrodynamics Study of Sediment Profile Erosion
author_facet Azman, A.
Zawawi, M.H.
Radzi, M.R.M.
Abas, A.
Aziz, N.A.
author_sort Azman, A.
title Smooth Particle Hydrodynamics Study of Sediment Profile Erosion
title_short Smooth Particle Hydrodynamics Study of Sediment Profile Erosion
title_full Smooth Particle Hydrodynamics Study of Sediment Profile Erosion
title_fullStr Smooth Particle Hydrodynamics Study of Sediment Profile Erosion
title_full_unstemmed Smooth Particle Hydrodynamics Study of Sediment Profile Erosion
title_sort smooth particle hydrodynamics study of sediment profile erosion
publishDate 2020
_version_ 1680859871900073984
score 13.226497