A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake

In recent years, the pounding effect during earthquake is a subject of high significance for structural engineers. In this paper, a state space formulation of the equation of motion is used in a MATLAB code. The pounding forces are calculated using nonlinear viscoelastic impact element. The numerica...

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Main Authors: Nica George Bogdan, Calofir Vasile, Corâci Ioan Cezar
Format: Article
Language:English
Published: Sciendo 2018-06-01
Series:Mathematical Modelling in Civil Engineering
Subjects:
gap
Online Access:https://doi.org/10.2478/mmce-2018-0006
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spelling doaj-1d64b56edf0d4d0585708593031fcc192021-09-06T19:22:33ZengSciendoMathematical Modelling in Civil Engineering2066-69342018-06-01142374910.2478/mmce-2018-0006A State Space Formulation for the Evaluation of the Pounding Forces During EarthquakeNica George Bogdan0Calofir Vasile1Corâci Ioan Cezar2Assistant Proffesor, PhD, Technical University of Civil EngineeringLecturer, PhD, Politehnica University of BucharestAssociate Professor, PhD, Politehnica University of BucharestIn recent years, the pounding effect during earthquake is a subject of high significance for structural engineers. In this paper, a state space formulation of the equation of motion is used in a MATLAB code. The pounding forces are calculated using nonlinear viscoelastic impact element. The numerical study is performed on SDOF structures subjected by 1940 EL-Centro and 1977 Vrancea N-S recording. While most of the studies available in the literature are related to Newmark implicit time integration method, in this study the equations of motion in state space form are direct integrated. The time domain is chosen instead of the complex one in order to catch the nonlinear behavior of the structures. The physical nonlinear behavior of the structures is modeled according to the Force Analogy Method. The coupling of the Force Analogy Method with the state space approach conducts to an explicit time integration method. Consequently, the collision is easily checked and the pounding forces are taken into account into the equation of motion in an easier manner than in an implicit integration method. A comparison with available data in the literature is presented.https://doi.org/10.2478/mmce-2018-0006sdofstate spaceforce analogy methodnonlinear viscoelasticgap
collection DOAJ
language English
format Article
sources DOAJ
author Nica George Bogdan
Calofir Vasile
Corâci Ioan Cezar
spellingShingle Nica George Bogdan
Calofir Vasile
Corâci Ioan Cezar
A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake
Mathematical Modelling in Civil Engineering
sdof
state space
force analogy method
nonlinear viscoelastic
gap
author_facet Nica George Bogdan
Calofir Vasile
Corâci Ioan Cezar
author_sort Nica George Bogdan
title A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake
title_short A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake
title_full A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake
title_fullStr A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake
title_full_unstemmed A State Space Formulation for the Evaluation of the Pounding Forces During Earthquake
title_sort state space formulation for the evaluation of the pounding forces during earthquake
publisher Sciendo
series Mathematical Modelling in Civil Engineering
issn 2066-6934
publishDate 2018-06-01
description In recent years, the pounding effect during earthquake is a subject of high significance for structural engineers. In this paper, a state space formulation of the equation of motion is used in a MATLAB code. The pounding forces are calculated using nonlinear viscoelastic impact element. The numerical study is performed on SDOF structures subjected by 1940 EL-Centro and 1977 Vrancea N-S recording. While most of the studies available in the literature are related to Newmark implicit time integration method, in this study the equations of motion in state space form are direct integrated. The time domain is chosen instead of the complex one in order to catch the nonlinear behavior of the structures. The physical nonlinear behavior of the structures is modeled according to the Force Analogy Method. The coupling of the Force Analogy Method with the state space approach conducts to an explicit time integration method. Consequently, the collision is easily checked and the pounding forces are taken into account into the equation of motion in an easier manner than in an implicit integration method. A comparison with available data in the literature is presented.
topic sdof
state space
force analogy method
nonlinear viscoelastic
gap
url https://doi.org/10.2478/mmce-2018-0006
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