Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records

Important parameters of strong ground motions in a site in terms of potential damage to structures can be represented by an intensity measure parameter. One of the intensity measures that is widely used in the quantitative representation of earthquake intensity in earthquake engineering is the spect...

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Main Authors: Fateme Soleimani, Aliakbar Yahyaabadi
Format: Article
Language:fas
Published: Semnan University 2022-09-01
Series:مجله مدل سازی در مهندسی
Subjects:
Online Access:https://modelling.semnan.ac.ir/article_6954_3b5d2a07192544b47031b2cfb40c7acc.pdf
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author Fateme Soleimani
Aliakbar Yahyaabadi
author_facet Fateme Soleimani
Aliakbar Yahyaabadi
author_sort Fateme Soleimani
collection DOAJ
description Important parameters of strong ground motions in a site in terms of potential damage to structures can be represented by an intensity measure parameter. One of the intensity measures that is widely used in the quantitative representation of earthquake intensity in earthquake engineering is the spectral acceleration at the first-mode period of the structure. Recent studies have shown that the use of this parameter as an intensity measure may lead to high dispersion in predicting the nonlinear response of buildings. For this purpose, using intensity measures with higher sufficiency and efficiency has been received attention in recent years. One of these intensity measures that has been proposed in recent research is the optimal combination of spectral displacements. Approximately, the first-order Taylor series expansion can be used to derive an attenuation relationship for this intensity measure based on the existing relationships for spectral accelerations. However, the derivation of an independent attenuation relationship for this intensity measure in order to reduce the calculation error is inevitable. For this purpose, a ground motion prediction model was proposed for this intensity measure. In developing the attenuation relationship, more than five hundred and fifty pairs of accelerograms were used, which were recorded in 284 earthquakes with a magnitude of 4 to 7.6 and at distances of less than 100 km in different regions of Iran. The proposed model has been investigated by examining the residual values against magnitude and distance as well as its application in comparison with other attenuation relationships.
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spelling doaj.art-09d7b3ccd9ad49a9b6154c306f4586532024-02-23T19:09:41ZfasSemnan Universityمجله مدل سازی در مهندسی2008-48542783-25382022-09-01207017919310.22075/jme.2022.25054.21696954Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion recordsFateme Soleimani0Aliakbar Yahyaabadi1Department of Civil Engineering Faculty of Engineering University of BojnordDepartment of civil engineering, Faculty of engineering, University of Bojnord, Bojnord, IranImportant parameters of strong ground motions in a site in terms of potential damage to structures can be represented by an intensity measure parameter. One of the intensity measures that is widely used in the quantitative representation of earthquake intensity in earthquake engineering is the spectral acceleration at the first-mode period of the structure. Recent studies have shown that the use of this parameter as an intensity measure may lead to high dispersion in predicting the nonlinear response of buildings. For this purpose, using intensity measures with higher sufficiency and efficiency has been received attention in recent years. One of these intensity measures that has been proposed in recent research is the optimal combination of spectral displacements. Approximately, the first-order Taylor series expansion can be used to derive an attenuation relationship for this intensity measure based on the existing relationships for spectral accelerations. However, the derivation of an independent attenuation relationship for this intensity measure in order to reduce the calculation error is inevitable. For this purpose, a ground motion prediction model was proposed for this intensity measure. In developing the attenuation relationship, more than five hundred and fifty pairs of accelerograms were used, which were recorded in 284 earthquakes with a magnitude of 4 to 7.6 and at distances of less than 100 km in different regions of Iran. The proposed model has been investigated by examining the residual values against magnitude and distance as well as its application in comparison with other attenuation relationships.https://modelling.semnan.ac.ir/article_6954_3b5d2a07192544b47031b2cfb40c7acc.pdfseismic hazardintensity measureattenuation relationshipstrong ground motionsoptimal combination of spectral displacements
spellingShingle Fateme Soleimani
Aliakbar Yahyaabadi
Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records
مجله مدل سازی در مهندسی
seismic hazard
intensity measure
attenuation relationship
strong ground motions
optimal combination of spectral displacements
title Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records
title_full Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records
title_fullStr Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records
title_full_unstemmed Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records
title_short Ground Motion Prediction Equation for Optimal Combination of Spectral Displacements as the intensity measure for short-period buildings using Iranian strong ground motion records
title_sort ground motion prediction equation for optimal combination of spectral displacements as the intensity measure for short period buildings using iranian strong ground motion records
topic seismic hazard
intensity measure
attenuation relationship
strong ground motions
optimal combination of spectral displacements
url https://modelling.semnan.ac.ir/article_6954_3b5d2a07192544b47031b2cfb40c7acc.pdf
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AT aliakbaryahyaabadi groundmotionpredictionequationforoptimalcombinationofspectraldisplacementsastheintensitymeasureforshortperiodbuildingsusingiranianstronggroundmotionrecords