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SEISMIC RESPONSE OF 2-D PLANE FRAMED BUILDINGS ECCENTRICALLY BRACED WITH VERTICAL SHEAR LINKS

Article

Last updated: 13 Dec 2022

Subjects

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Tags

Eccentrically braced frames
vertical shear links
Energy dissipation
Nonlinear time history analysis
nonlinear static pushover analysis
cyclic loading
seismic loads
SEISMIC RESPONSE OF 2-D PLANE FRAMED BUILDINGS ECCENTRICALLY BRACED WITH VERTICAL SHEAR LINKS
ICASGE'21
Structural Analysis (STA)

Abstract

There exist a variety of techniques which can be utilized in seismic-resistant structures in order to protect it from earthquake ground motions. One of these techniques is the employment of vertical eccentrically braced frames (V-EBFs) which dissipate energy during seismic hazard by means of yielding of certain elements, commonly referred to as vertical shear links (VSLs), whereas the whole structures is kept safe in the elastic stage. This paper presents a numerical study on 2-D framed buildings equipped with V-EBFs using two finite element software ANSYS Workbench and ETABS. Each of modal analyses, nonlinear static pushover analyses and nonlinear time history analyses have been conducted on 6 different 2-D framed steel buildings configurations equipped with VSLs made of different metallic alloys, particularly magnesium and steel. Also, how the number of V-EBFs in the building and its placement position influence both the global and local behavior of the buildings have been investigated. Finally, general remarks regarding the optimum conditions of equipping V-EBFs in 2-D framed steel buildings have been pointed out (e.g., VSL material of fabrication, V-EBFs number and placement position).

Categories

Structural Analysis (STA)

Keywords

Eccentrically braced frames, vertical shear links, Energy dissipation, Nonlinear time history analysis, nonlinear static pushover analysis, cyclic loading, seismic loads

Authors

First Name

Ahmed

Last Name

El-Gammal

Affiliation

Department of Civil Engineering, Faculty of Engineering, Delta University for Science & Technology, Gamasa, Egypt

Email

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City

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Orcid

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First Name

Saher

Last Name

El-Khoriby

Affiliation

Department of Structural Engineering, Faculty of Engineering, Tanta University, Egypt

Email

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City

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Orcid

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First Name

Ayman

Last Name

Seleemah

Affiliation

Department of Structural Engineering, Faculty of Engineering, Tanta University, Egypt

Email

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City

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Orcid

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Publish Date

14 Jun 2021

Link

https://icasge21.conferences.ekb.eg/article_1035.html

Order

15

Publication Type

Conference

Publication Title

ICASGE'21

Publication Link

https://icasge21.conferences.ekb.eg/

Details

Type

Article

Locale

en

Created At

13 Dec 2022