A time stepping method in analysis of nonlinear structural dynamics

In this paper a new method is proposed for the direct time integration method for structural dynamics problems. The proposed method assumes second order variations of the acceleration at each time step. Therefore more terms in the Taylor series expansion were used compared to other methods. Because...

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Main Authors: Gholampour A. A., Ghassemieh M., Razavi H.
Format: Article
Language:English
Published: University of West Bohemia 2011-12-01
Series:Applied and Computational Mechanics
Subjects:
Online Access:http://www.kme.zcu.cz/acm/index.php/acm/article/view/128/122
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spelling doaj-85d092f8fe2a4ca5b5d77a8db8707be52021-09-02T02:40:39ZengUniversity of West BohemiaApplied and Computational Mechanics1802-680X2011-12-0152143150A time stepping method in analysis of nonlinear structural dynamicsGholampour A. A.Ghassemieh M.Razavi H.In this paper a new method is proposed for the direct time integration method for structural dynamics problems. The proposed method assumes second order variations of the acceleration at each time step. Therefore more terms in the Taylor series expansion were used compared to other methods. Because of the increase in order of variations of acceleration, this method has higher accuracy than classical methods. The displacement function is a polynomial with five constants and they are calculated using: two equations for initial conditions (from the end of previous time step), two equations for satisfying the equilibrium at both ends of the time step, and one equation for the weighted residual integration. Proposed method has higher stability and order of accuracy than the other methods.http://www.kme.zcu.cz/acm/index.php/acm/article/view/128/122Direct time integrationWeighted residualNonlinear structural dynamicsHigher accuracySecond order acceleration
collection DOAJ
language English
format Article
sources DOAJ
author Gholampour A. A.
Ghassemieh M.
Razavi H.
spellingShingle Gholampour A. A.
Ghassemieh M.
Razavi H.
A time stepping method in analysis of nonlinear structural dynamics
Applied and Computational Mechanics
Direct time integration
Weighted residual
Nonlinear structural dynamics
Higher accuracy
Second order acceleration
author_facet Gholampour A. A.
Ghassemieh M.
Razavi H.
author_sort Gholampour A. A.
title A time stepping method in analysis of nonlinear structural dynamics
title_short A time stepping method in analysis of nonlinear structural dynamics
title_full A time stepping method in analysis of nonlinear structural dynamics
title_fullStr A time stepping method in analysis of nonlinear structural dynamics
title_full_unstemmed A time stepping method in analysis of nonlinear structural dynamics
title_sort time stepping method in analysis of nonlinear structural dynamics
publisher University of West Bohemia
series Applied and Computational Mechanics
issn 1802-680X
publishDate 2011-12-01
description In this paper a new method is proposed for the direct time integration method for structural dynamics problems. The proposed method assumes second order variations of the acceleration at each time step. Therefore more terms in the Taylor series expansion were used compared to other methods. Because of the increase in order of variations of acceleration, this method has higher accuracy than classical methods. The displacement function is a polynomial with five constants and they are calculated using: two equations for initial conditions (from the end of previous time step), two equations for satisfying the equilibrium at both ends of the time step, and one equation for the weighted residual integration. Proposed method has higher stability and order of accuracy than the other methods.
topic Direct time integration
Weighted residual
Nonlinear structural dynamics
Higher accuracy
Second order acceleration
url http://www.kme.zcu.cz/acm/index.php/acm/article/view/128/122
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