Damped resonant steady-state sloshing in an upright circular tank

The nonlinear Narimanov–Moiseev-type modal system with linear damping terms is employed to study the damped steady-state resonant sloshing in an upright circular tank. Estimating the damping coefficients (ratios) by using Miles’ formula shows that the damping may matter for laboratory tanks. An asympt...

Full description

Saved in:
Bibliographic Details
Date:2017
Author Affiliations:
  • I. A. Raynovskyy — Institute of Mathematics
  • A. N. Timokha — Institute of Mathematics
Keywords:keywords
Main Authors: Raynovskyy, I. A., Timokha, A. N., Райновский, И. А., Тимоха, А. Н., Райновський, І. А., Тімоха, О. М.
Format: Article
Language:English
Published: Інститут математики НАН України 2017
Online Access:https://trim.imath.kiev.ua/index.php/trim/article/view/345
Tags: Add Tag
No Tags, Be the first to tag this record!
Journal Title:Transactions of Institute of Mathematics of NAS of Ukraine
Download file: Pdf

Institution

Transactions of Institute of Mathematics of NAS of Ukraine
Description
Summary:The nonlinear Narimanov–Moiseev-type modal system with linear damping terms is employed to study the damped steady-state resonant sloshing in an upright circular tank. Estimating the damping coefficients (ratios) by using Miles’ formula shows that the damping may matter for laboratory tanks. An asymptotic steady-state solution of the modal system is derived for a prescribed cyclic tank motion with four (sway/surge/pitch/roll) degrees of freedom; the forcing frequency is close to the lowest natural sloshing frequency. The steady-state response curves by the two lowestorder natural sloshing mode amplitudes are examined versus the semi-axes ratio of the artificial elliptic orbit.