Single-phase and two-phase smoothed particle hydrodynamics for sloshing in the low filling ratio of the prismatic tank

被引:0
|
作者
Trimulyono, A. [1 ,2 ]
Chrismianto, D. [1 ]
Samuel [3 ]
Aslami, M.H. [3 ]
机构
[1] Department of Naval Architecture, Faculty of Engineering, Diponegoro University, Jl. Prof. Soedarto, S.H, Tembalang, Semarang, Indonesia
[2] Ship Hydrodynamics Laboratory, Departement of Naval Architecture, Diponegoro University, Indonesia
[3] Department of Mechanical, Aerospace and Civil Engineering, University of Machester, United Kingdom
来源
International Journal of Engineering, Transactions B: Applications | 2021年 / 34卷 / 05期
关键词
Hydraulics - Degrees of freedom (mechanics) - Deformation - Filling - Tanks (containers) - Hydrodynamics - Oscillating flow;
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学科分类号
摘要
The present study is to carry out a numerical sloshing using smoothed particle hydrodynamics (SPH) in the prismatic tank. Sloshing is a violent flow caused by the resonance of fluid in the tank by external oscillation. The prismatic tank was used to resemble a membrane LNG type carrier. The sloshing experiment was carried out using three pressure sensors, a camera high resolution, and four degrees of freedom forced oscillation machine. In this study, a filling ratio of 25% was used to reproduce sloshing in a low filling ratio. Only roll motion is used in the numerical simulation. Roll motion is directly imposing from the experiment displacement, and a comparison of hydrostatic and dynamic pressure was made to validate the SPH result. The time duration of the sloshing is the same as the experiment. Single-phase and multiphase SPH are conducted to reproduce sloshing in the prismatic tank. Sloshing was done both for the 2D and 3D domain. It shows that SPH has a good agreement with analytical and experimental results. The dynamic pressure is similar to an experiment through a spurious pressure oscillation exist. The dynamics pressure results show fairly for short time simulation and slightly decrease after that. The free surface deformation tendency is similar to experiment. © 2021 Materials and Energy Research Center. All rights reserved.
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页码:1345 / 1351
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