Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Investigation of Sloshing with Vertical and Horizontal Baffle in the Prismatic Tank using Meshfree CFD

View through CrossRef
Sloshing is a phenomenon where the tank experiences an external oscillating motion due to the interaction of fluid with tank. The most appropriate way to prevent instability from the sloshing movement is to add baffles or anti-sloshing. This paper was conducted with the 3D simulation of sloshing roll motion on the prismatic tank with a simulation time of 28 seconds. Vertical and Horizontal baffles were used to mitigate sloshing in the prismatic tank. The ratio of baffle height and water depth is 0.7, 0.8 and 0.9. Moreover, horizontal baffle position is 0.1, 0.2, 0.3, and 0.4 respectively, with the tank filling water ratio is 25%. The numerical study was carried out using meshfree CFD, i.e., Smoothed Particle Hydrodynamics. In addition, advanced post-processing was conducted with Blender. The aims of this study were found out the effective baffle configuration ​​to reduce sloshing using vertical and horizontal in the prismatic tank. The results showed the most effective baffle variation for roll motion is 0.9 for vertical baffle and a horizontal baffle height is 0.1 from the water surface. It showed baffles effectively reduces dynamic pressure, hydrodynamic force and free surface deformation
Title: Investigation of Sloshing with Vertical and Horizontal Baffle in the Prismatic Tank using Meshfree CFD
Description:
Sloshing is a phenomenon where the tank experiences an external oscillating motion due to the interaction of fluid with tank.
The most appropriate way to prevent instability from the sloshing movement is to add baffles or anti-sloshing.
This paper was conducted with the 3D simulation of sloshing roll motion on the prismatic tank with a simulation time of 28 seconds.
Vertical and Horizontal baffles were used to mitigate sloshing in the prismatic tank.
The ratio of baffle height and water depth is 0.
7, 0.
8 and 0.
9.
Moreover, horizontal baffle position is 0.
1, 0.
2, 0.
3, and 0.
4 respectively, with the tank filling water ratio is 25%.
The numerical study was carried out using meshfree CFD, i.
e.
, Smoothed Particle Hydrodynamics.
In addition, advanced post-processing was conducted with Blender.
The aims of this study were found out the effective baffle configuration ​​to reduce sloshing using vertical and horizontal in the prismatic tank.
The results showed the most effective baffle variation for roll motion is 0.
9 for vertical baffle and a horizontal baffle height is 0.
1 from the water surface.
It showed baffles effectively reduces dynamic pressure, hydrodynamic force and free surface deformation.

Related Results

Self-induced sloshing excited by a horizontally injected plane jet
Self-induced sloshing excited by a horizontally injected plane jet
A self-induced free-surface oscillation termed ‘self-induced sloshing’ was observed in a rectangular tank with a submerged and horizontally injected water jet. Self-induced slosh...
NUMERICAL SIMULATION OF SLOSHING IN THE PRISMATIC TANK WITH VERTICAL BAFFLE USING SMOOTHED PARTICLE HYDRODYNAMICS
NUMERICAL SIMULATION OF SLOSHING IN THE PRISMATIC TANK WITH VERTICAL BAFFLE USING SMOOTHED PARTICLE HYDRODYNAMICS
The capacity of LNG carriers is increasing year by year due to the demand for liquified natural gas (LNG). One of the types of LNG carriers is membrane type that the tank is prisma...
Simulación numérica del sloshing
Simulación numérica del sloshing
Simulación numérica del sloshing Numerical simulation of sloshing Miguel A. Celis Carbajal, Juan B.V.Wanderley, Marcelo A.S. Neves Universidad Federal de Rio de Janeiro/COPPE, R...
Investigation of Sloshing in Different Tank Shapes using Smoothed Particle Hydrodynamics
Investigation of Sloshing in Different Tank Shapes using Smoothed Particle Hydrodynamics
Sloshing is the violent motion of a resonant fluid in a moving tank; when the fluid moves and interacts with the tank, the dynamic pressure from such an interaction can cause large...
Numerical Simulation Low Filling Ratio of Sway Sloshing in the Prismatic Tank Using Smoothed Particle Hydrodynamics
Numerical Simulation Low Filling Ratio of Sway Sloshing in the Prismatic Tank Using Smoothed Particle Hydrodynamics
Sloshing is one of challenging problem in the free surface flow, because is dealing with large deformation of fluid. The present paper was carried out of numerical sloshing in the ...
Computational Modelling of Sloshing in Liquefied Natural Gas Tank
Computational Modelling of Sloshing in Liquefied Natural Gas Tank
Sloshing in the tank of liquefied natural gas (LNG) carriers has recently attracted immense attention due to the rise in demand for LNG transportation. It occurs in partially fille...

Back to Top