Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift

This work deals with seismic analysis of structures by taking into account soil-structure interaction where the structure is modeled by an equivalent flexible beam mounted on a rigid foundation that is supported by a Winkler like soil. The foundation is assumed to undergo local uplift and the rotati...

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Main Authors: El Abbas N., Khamlichi A., Bezzazi M.
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20168309006
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spelling doaj-5b8a6139812045a880ee48ed712c84302021-02-02T02:41:40ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01830900610.1051/matecconf/20168309006matecconf_csndd2016_09006Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local upliftEl Abbas N.0Khamlichi A.1Bezzazi M.2Faculty of Science and Techniques Tangier, Department of PhysicsENSA Tetouan, Department TITMFaculty of Science and Techniques Tangier, Department of PhysicsThis work deals with seismic analysis of structures by taking into account soil-structure interaction where the structure is modeled by an equivalent flexible beam mounted on a rigid foundation that is supported by a Winkler like soil. The foundation is assumed to undergo local uplift and the rotations are considered to be large. The coupling of the system is represented by a series of springs and damping elements that are distributed over the entire width of the foundation. The non-linear equations of motion of the system were derived by taking into account the equilibrium of the coupled foundation-structure system where the structure was idealized as a single-degree-of-freedom. The seismic response of the structure was calculated under the occurrence of foundation uplift for both large and small rotations. The non-linear differential system of equations was integrated by using the Matlab command ode15s. The maximum response has been determined as function of the intensity of the earthquake, the slenderness of the structure and the damping ratio. It was found that considering local uplift with small rotations of foundation under seismic loading leads to unfavorable structural response in comparison with the case of large rotations.http://dx.doi.org/10.1051/matecconf/20168309006
collection DOAJ
language English
format Article
sources DOAJ
author El Abbas N.
Khamlichi A.
Bezzazi M.
spellingShingle El Abbas N.
Khamlichi A.
Bezzazi M.
Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
MATEC Web of Conferences
author_facet El Abbas N.
Khamlichi A.
Bezzazi M.
author_sort El Abbas N.
title Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
title_short Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
title_full Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
title_fullStr Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
title_full_unstemmed Analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
title_sort analyzing the effect of large rotations on the seismic response of structures subjected to foundation local uplift
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description This work deals with seismic analysis of structures by taking into account soil-structure interaction where the structure is modeled by an equivalent flexible beam mounted on a rigid foundation that is supported by a Winkler like soil. The foundation is assumed to undergo local uplift and the rotations are considered to be large. The coupling of the system is represented by a series of springs and damping elements that are distributed over the entire width of the foundation. The non-linear equations of motion of the system were derived by taking into account the equilibrium of the coupled foundation-structure system where the structure was idealized as a single-degree-of-freedom. The seismic response of the structure was calculated under the occurrence of foundation uplift for both large and small rotations. The non-linear differential system of equations was integrated by using the Matlab command ode15s. The maximum response has been determined as function of the intensity of the earthquake, the slenderness of the structure and the damping ratio. It was found that considering local uplift with small rotations of foundation under seismic loading leads to unfavorable structural response in comparison with the case of large rotations.
url http://dx.doi.org/10.1051/matecconf/20168309006
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