Journal Article

·2022

Wave impact on a rigid and flexible wall using various viscous fluids during sloshing

Fatih C. Korkmaz YTU

Proceedings of the Institution of Mechanical Engineers Part M Journal of Engineering for the Maritime Environment

Abstract

This paper addresses a study of wave impacts on the chamfered shape of a structure during sloshing, using two different fluids through experimental analysis. Horizontal oscillations are carried out on the tank under various excitation frequencies at a fixed amplitude. Rigid and relatively flexible walls are considered for measuring pressure impact and structural deformation from the wave impacts. Various wave impulses are directed at the sidewall, and the structural deformations are discussed in detail. Wave impacts for various fluids are carried out, from which the pressure-time history, strain values, and free-surface deformation measurements are highlighted. Through the analysis, the breaking wave gets distorted by bottom chamfer at around the vertical portion of the wall. Therefore, physical results are changed likely to having with the wave strike the wall. The impact from more viscous fluids have also been found to reduce both the dynamic pressure and structural strain at practically the same rates in comparison with less viscous fluids.

Keywords

Slosh dynamics Mechanics Impact pressure Chamfer (geometry) Hydroelasticity Free surface Deformation (meteorology) Viscous liquid Fluid–structure interaction Materials science Geology Structural engineering Vibration Acoustics Physics Engineering Finite element method Geometry Composite material Mathematics

Subject Areas

Fluid Dynamics Simulations and Interactions ·Computational Mechanics ·Physical Sciences
Coastal and Marine Dynamics ·Earth-Surface Processes ·Physical Sciences
Wave and Wind Energy Systems ·Ocean Engineering ·Physical Sciences

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