Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes

Structural pounding between adjacent, insufficiently separated buildings, or bridge segments, has been repeatedly observed during seismic excitations. Such earthquake-induced collisions may cause severe structural damage or even lead to the collapse of colliding structures. The aim of the present pa...

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Main Authors: Seyed Mohammad Khatami, Hosein Naderpour, Rui Carneiro Barros, Anna Jakubczyk-Gałczyńska, Robert Jankowski
Format: Article
Language:English
Published: MDPI AG 2019-12-01
Series:Geosciences
Subjects:
Online Access:https://www.mdpi.com/2076-3263/10/1/18
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spelling doaj-0ac25c879c354dcb9ba78c68c9f2f1e42020-11-25T01:34:58ZengMDPI AGGeosciences2076-32632019-12-011011810.3390/geosciences10010018geosciences10010018Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during EarthquakesSeyed Mohammad Khatami0Hosein Naderpour1Rui Carneiro Barros2Anna Jakubczyk-Gałczyńska3Robert Jankowski4Center of Semnan Municipality, University of Applied Science and Technology, Semnan 35149, IranFaculty of Civil Engineering, Semnan University, Semnan 3513119111, IranFaculty of Engineering, University of Porto (FEUP), 4200-465 Porto, PortugalFaculty of Civil and Environmental Engineering, Gdansk University of Technology, 80-233 Gdansk, PolandFaculty of Civil and Environmental Engineering, Gdansk University of Technology, 80-233 Gdansk, PolandStructural pounding between adjacent, insufficiently separated buildings, or bridge segments, has been repeatedly observed during seismic excitations. Such earthquake-induced collisions may cause severe structural damage or even lead to the collapse of colliding structures. The aim of the present paper was to show the results of the study focused on determination of peak impact forces during collisions between buildings exposed to different seismic excitations. A set of different ground motion records, with various peak ground acceleration (PGA) values and frequency contents, were considered. First, pounding-involved numerical analysis was conducted for the basic parameters of colliding buildings. Then, the parametric study was carried out for different structural natural periods, structural damping ratios, gap sizes between buildings and coefficients of restitution. The results of the analysis conducted for the basic structural parameters indicate that the largest response of the analysed buildings was observed for the Duzce earthquake. The parametric study showed that the pounding-involved structural response depended substantially on all parameters considered in the analysis, and the largest response was observed for different ground motions. The results of the study presented in this paper indicate that the value of the peak impact force expected during the time of the earthquake does not depend on the PGA value of ground motion, but rather on the frequency contents of excitation and pounding scenario. It is therefore recommended that the peak impact force for buildings exposed to structural pounding during earthquakes should be determined individually for the specific structural configuration taking into account the design ground motion.https://www.mdpi.com/2076-3263/10/1/18earthquakesimpact forcestructural poundingbuildingsparametric study
collection DOAJ
language English
format Article
sources DOAJ
author Seyed Mohammad Khatami
Hosein Naderpour
Rui Carneiro Barros
Anna Jakubczyk-Gałczyńska
Robert Jankowski
spellingShingle Seyed Mohammad Khatami
Hosein Naderpour
Rui Carneiro Barros
Anna Jakubczyk-Gałczyńska
Robert Jankowski
Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes
Geosciences
earthquakes
impact force
structural pounding
buildings
parametric study
author_facet Seyed Mohammad Khatami
Hosein Naderpour
Rui Carneiro Barros
Anna Jakubczyk-Gałczyńska
Robert Jankowski
author_sort Seyed Mohammad Khatami
title Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes
title_short Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes
title_full Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes
title_fullStr Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes
title_full_unstemmed Determination of Peak Impact Force for Buildings Exposed to Structural Pounding during Earthquakes
title_sort determination of peak impact force for buildings exposed to structural pounding during earthquakes
publisher MDPI AG
series Geosciences
issn 2076-3263
publishDate 2019-12-01
description Structural pounding between adjacent, insufficiently separated buildings, or bridge segments, has been repeatedly observed during seismic excitations. Such earthquake-induced collisions may cause severe structural damage or even lead to the collapse of colliding structures. The aim of the present paper was to show the results of the study focused on determination of peak impact forces during collisions between buildings exposed to different seismic excitations. A set of different ground motion records, with various peak ground acceleration (PGA) values and frequency contents, were considered. First, pounding-involved numerical analysis was conducted for the basic parameters of colliding buildings. Then, the parametric study was carried out for different structural natural periods, structural damping ratios, gap sizes between buildings and coefficients of restitution. The results of the analysis conducted for the basic structural parameters indicate that the largest response of the analysed buildings was observed for the Duzce earthquake. The parametric study showed that the pounding-involved structural response depended substantially on all parameters considered in the analysis, and the largest response was observed for different ground motions. The results of the study presented in this paper indicate that the value of the peak impact force expected during the time of the earthquake does not depend on the PGA value of ground motion, but rather on the frequency contents of excitation and pounding scenario. It is therefore recommended that the peak impact force for buildings exposed to structural pounding during earthquakes should be determined individually for the specific structural configuration taking into account the design ground motion.
topic earthquakes
impact force
structural pounding
buildings
parametric study
url https://www.mdpi.com/2076-3263/10/1/18
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