Journal Article

·2022 OPEN ACCESS

The Effect of Tank Geometry on Sloshing Forces

Fatih C. Korkmaz YTU

Gemi ve Deniz Teknolojisi

Abstract

The geometry of the impact surface is as effective as the wave shape in the change of sloshing forces. The wave shape depends on the shape of the tank, oscillation frequency coinciding with the natural frequencies of the tank under sloshing motion. This study compares the surface deformations and pressures on the lateral walls that occur during oscillation along one axis at the same oscillation frequency between a rectangular tank and a chamfered tank of similar dimensions. The pressure distribution on the surfaces due to sloshing was measured for both tanks over a wide range of oscillation frequencies. From experiments, free surface deformations were monitored in the resonant and non-resonant regions, and the impact effects of the waves were compared. While maximum pressures were measured in the resonant regions of both tanks, pressures decreased at other oscillation frequencies. The sloshing of the tanks changed the wave shapes based on the geometry of the chamfered tank and also caused lower measurements at the same pressure measurement points at similar oscillation/natural frequency ratios.

Keywords

Slosh dynamics Oscillation (cell signaling) Natural frequency Mechanics Impact pressure Materials science Free surface Dynamic pressure Range (aeronautics) Acoustics Physics Vibration Composite material Chemistry

Subject Areas

Fluid Dynamics Simulations and Interactions ·Computational Mechanics ·Physical Sciences
Ship Hydrodynamics and Maneuverability ·Ocean Engineering ·Physical Sciences
Structural Integrity and Reliability Analysis ·Mechanical Engineering ·Physical Sciences