Dynamic Analysis Based Seismic Performance Quantification of a Steel Corrugated Shear Wall System

Author(s):  
L.G. Vigh ◽  
G.G. Deierlein ◽  
E. Miranda ◽  
A. Liel ◽  
S. Tipping
2009 ◽  
Vol 18 (7) ◽  
pp. 807-822 ◽  
Author(s):  
Hee-San Chung ◽  
Byoung-Wook Moon ◽  
Sung-Kyung Lee ◽  
Ji-Hun Park ◽  
Kyung-Won Min

2020 ◽  
Vol 18 (10) ◽  
pp. 4839-4872
Author(s):  
Dayang Wang ◽  
Chengqing Wu ◽  
Yongshan Zhang ◽  
Guofeng Xue ◽  
Yizhe Xu

2013 ◽  
Vol 85 ◽  
pp. 48-59 ◽  
Author(s):  
László Gergely Vigh ◽  
Gregory G. Deierlein ◽  
Eduardo Miranda ◽  
Abbie B. Liel ◽  
Steven Tipping

2018 ◽  
Vol 65 ◽  
pp. 08004
Author(s):  
Muhammad Aji Fajari ◽  
Ririt Aprilin Sumarsono

Introduction to the seismic parameter for structural analysis has increased the awareness of better quality for a building to reach safety purpose limit. Considerably, the configuration and shape of the building must be restricted to the regular one. This paper will harness horizontally irregular building to be remodeled into several regular buildings. Furthermore, linear dynamic analysis by using response spectra is harnessed for gaining behaviour of the buildings and capacity of structural members. Beams are chosen to be discontinuous at several corners to create separation on the building; hereinafter, console beam system is implemented. Next, the double column is utilized to obtain the separation of the horizontally irregular building. Entirely, the discontinuity issue of applying dilatation leads to the behaviour of the building and capacity of the structural member inside. Further discontinuity distance which is shown in a double column system can be settled down by applying dilatation in the accurate building axis so that the failure will not be severe or simply deducting the gap between twin columns. In contrary, console beam satisfactorily behaves in order to decrease horizontal irregularity even turn it into the regular building. Moreover, the capacity of the building can be significantly enhanced as the shear wall is installed.


2021 ◽  
Author(s):  
Özlem Çavdar

Abstract In this paper, the seismic behavior of existing reinforced concrete tall building is investigated by the linear and nonlinear dynamic analysis. The selected reinforced concrete structure was designed according to “Turkey Seismic Code-2007” (TEC-2007). A typical 41 story reinforced concrete building is designed. Turkey Building Earthquake Code-2018 (TBEC-2018) is utilized for evaluating the seismic performance of the selected building. Natural earthquake acceleration record selected and adjusted for compatibility with the adopted design spectrum, is used. A performance analysis according to the TBEC-2018 in a 41-story reinforced concrete shear wall-framed structure in Istanbul where active fault lines are located. The selected reinforced concrete shear wall unsymmetrical plan tall building is located in Istanbul, Turkey. The performance goals of the reinforced concrete shear wall structure are evaluated by applying procedures of the TBEC-2018 and nonlinear dynamic analysis. According to the Code, the reinforced concrete shear wall building is not expected to satisfy life safety performance levels under design earthquake.


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