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Sloshing analysis of a two-layered fluid in a tank with baffles using Level Set Method

In this paper, a multiphase method based on the Level Set Method is employed to study the sloshing phenomenon of two-layer liquid inside a two-dimensional rectangular container subjected to horizontal excitation. Validation of the multiphase approach is conducted through a comparative analysis with...

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Bibliographic Details
Published in:International review of applied sciences and engineering (Online) 2024-08
Main Authors: Benmasaoud, Bilal, Essaouini, Hilal, Hamydy, Ahmed, Lhassane Lahlaouti, Mohammed
Format: Article
Language:English
Online Access:Get full text
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Summary:In this paper, a multiphase method based on the Level Set Method is employed to study the sloshing phenomenon of two-layer liquid inside a two-dimensional rectangular container subjected to horizontal excitation. Validation of the multiphase approach is conducted through a comparative analysis with existing studies. Results show a fair agreement between the numerical model and available numerical and experimental data. Initially, a series of simulations were used to compare the sloshing behaviour of a two-layer fluid with that of a single-layer fluid. Even under identical external excitation, layered fluids demonstrate different sloshing patterns compared to single-layer liquids. Furthermore, the influence of the periodic excitation frequency on the sloshing dynamics was examined. Analysis was also conducted to explore the effect of internal baffles on the oscillatory behaviour of layered liquid sloshing. TheĀ findings reveal that the baffles significantly mitigate the sloshing of the layered fluid.
ISSN:2062-0810
2063-4269
DOI:10.1556/1848.2024.00868