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The coupling effect of sloshing and vibrations of a rectangular tank subjected to rectilinear motion

Authors
Kim, Soo-MinKwak, Moon K.Kim, Dae W.Kim, Kuk-SuAmabili, Marco
Issue Date
May-2025
Publisher
ELSEVIER
Keywords
Sloshing-structure interaction problem; Hydroelastic vibrations; Sloshing; Energy approach; Assumed modes method
Citation
Alexandria Engineering Journal, v.121, pp 103 - 116
Pages
14
Indexed
SCIE
SCOPUS
Journal Title
Alexandria Engineering Journal
Volume
121
Start Page
103
End Page
116
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/57966
DOI
10.1016/j.aej.2025.02.068
ISSN
1110-0168
2090-2670
Abstract
This study focuses on analyzing the interactions that occur between sloshing and hydroelastic vibrations in the wall plate of a rectangular tank that contains fluid when it is subjected to rectilinear motion. Previous research has often examined the sloshing and fluid-structure interaction problem independently of each other. By contrast, this study adopts a unified approach that simultaneously addresses both phenomena through the solution of coupled equations of motion. This formulation utilizes the energy approach and the assumed modes method. The present study also derives a standard eigenvalue problem for the free vibration of the plate in conjunction with sloshing. Moreover, it explores the impact of the tank's rectilinear base movement on the coupled responses of the plate and sloshing. This approach facilitates the prediction of sloshing behavior and its influence on the elastic wall, as well as the examination of how wall vibrations affect sloshing motion. To experimentally validate the theoretical results, a rectangular tank with an elastic side wall was constructed and then partially filled with water. The obtained experimental results were consistent with the numerical predictions.
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College of Engineering > Department of Mechanical, Robotics and Energy Engineering > 1. Journal Articles

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