Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation

When partially filled liquid containers are excited vertically, the plane free-surface of the liquid can be stable or unstable depending on the amplitude and frequency of the external excitation. For some combinations of amplitude and frequency, the free-surface undergoes unbounded motion leading to...

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Main Authors: Siva Srinivas Kolukula, P. Chellapandi
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:Modelling and Simulation in Engineering
Online Access:http://dx.doi.org/10.1155/2013/252760
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spelling doaj-8d8a0ffdb2b44ca99841e825852fe6c12020-11-24T22:37:37ZengHindawi LimitedModelling and Simulation in Engineering1687-55911687-56052013-01-01201310.1155/2013/252760252760Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical ExcitationSiva Srinivas Kolukula0P. Chellapandi1Structural Mechanics Laboratory, Indira Gandhi Center for Atomic Research, Kalpakkam, Tamil Nadu 603102, IndiaStructural Mechanics Laboratory, Indira Gandhi Center for Atomic Research, Kalpakkam, Tamil Nadu 603102, IndiaWhen partially filled liquid containers are excited vertically, the plane free-surface of the liquid can be stable or unstable depending on the amplitude and frequency of the external excitation. For some combinations of amplitude and frequency, the free-surface undergoes unbounded motion leading to instability called parametric instability or parametric resonance, and, for few other combinations, the free-surface undergoes bounded stable motion. In parametric resonance, a small initial perturbation on the free-surface can build up unboundedly even for small external excitation, if the excitation acts on the tank for sufficiently long time. In this paper, the stability of the plane free-surface is investigated by numerical simulation. Stability chart for the governing Mathieu equation is plotted analytically using linear equations. Applying fully nonlinear finite element method based on nonlinear potential theory, the response of the plane free-surface is simulated for various cases.http://dx.doi.org/10.1155/2013/252760
collection DOAJ
language English
format Article
sources DOAJ
author Siva Srinivas Kolukula
P. Chellapandi
spellingShingle Siva Srinivas Kolukula
P. Chellapandi
Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation
Modelling and Simulation in Engineering
author_facet Siva Srinivas Kolukula
P. Chellapandi
author_sort Siva Srinivas Kolukula
title Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation
title_short Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation
title_full Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation
title_fullStr Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation
title_full_unstemmed Finite Element Simulation of Dynamic Stability of Plane Free-Surface of a Liquid under Vertical Excitation
title_sort finite element simulation of dynamic stability of plane free-surface of a liquid under vertical excitation
publisher Hindawi Limited
series Modelling and Simulation in Engineering
issn 1687-5591
1687-5605
publishDate 2013-01-01
description When partially filled liquid containers are excited vertically, the plane free-surface of the liquid can be stable or unstable depending on the amplitude and frequency of the external excitation. For some combinations of amplitude and frequency, the free-surface undergoes unbounded motion leading to instability called parametric instability or parametric resonance, and, for few other combinations, the free-surface undergoes bounded stable motion. In parametric resonance, a small initial perturbation on the free-surface can build up unboundedly even for small external excitation, if the excitation acts on the tank for sufficiently long time. In this paper, the stability of the plane free-surface is investigated by numerical simulation. Stability chart for the governing Mathieu equation is plotted analytically using linear equations. Applying fully nonlinear finite element method based on nonlinear potential theory, the response of the plane free-surface is simulated for various cases.
url http://dx.doi.org/10.1155/2013/252760
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AT pchellapandi finiteelementsimulationofdynamicstabilityofplanefreesurfaceofaliquidunderverticalexcitation
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