Analysis of Inherent Frequencies to Mitigate Liquid Sloshing in Overhead Double-Baffle Damper

Author:

Ali Ashraf1ORCID,Ismail Mohamed1,Kumar Madhan2ORCID,Breaz Daniel3,Karthikeyan Kadhavoor R.4ORCID

Affiliation:

1. Department of Mathematics, Sathyabama Institute of Science and Technology (SIST), Chennai 600119, India

2. Department of Aeronautical Engineering, Sathyabama Institute of Science and Technology (SIST), Chennai 600119, India

3. Department of Mathematics, “1 Decembrie 1918” University of Alba Iulia, 510009 Alba Iulia, Romania

4. Department of Applied Mathematics and Science, College of Engineering, National University of Science & Technology, Al-Hail, Muscat P.O. Box 620, Oman

Abstract

A disco-rectangular volume-fraction-of-fluid (VOF) model tank of a prismatic size is considered here for investigating the severe effect of overhead baffles made of three different materials, nylon, polyamide, and polylactic acid. In this work, the overdamped, undamped, and nominal damped motion of baffles and their effect are studied. In this research, the behaviour of different material baffles based on the sloshing effect and natural frequency of each baffle excited in damped, undamped, and overdamped cases is studied. VOF modelling is carried out in moving Yeoh model mesh with fluid–structure interaction between the water models for various baffle plates. The results of the water volume distribution and baffle displacement operating between a sloshing time of 0 and 1 s are recorded. Also, a strong investigation is carried out for the water volume suspended on overhead baffles by three different material selections.

Publisher

MDPI AG

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