Investigating Approximate Methods to Predict Residual Interstory Drift Ratio Demands in Steel Eccentrically Braced Frames

Author(s):  
Roohangiz Arab ◽  
Masood Yakhchalian
2020 ◽  
Vol 12 (2) ◽  
pp. 75-81
Author(s):  
Sumaidi Sumaidi ◽  
Wahyu Kartini ◽  
Anna Rumintang

Indonesia merupakan termasuk negara yang berada di ring of fire dan di beberapa batas lempeng tektonik, sehingga tingkat risiko terjadinya gempa bumi sangatlah tinggi.Analisa struktur yang digunakan yaitu perbandingan sistem concentrically braced frames (CBF) dan eccentrically braced frames (EBF) berdasarkan pada peraturan struktur tahan gempa. Hasil analisis menunjukkan Daktilitas struktur dengan sistem CBF lebih kecil daripada sistem EBF. Struktur dengan sistem CBF lebih kaku dan kokoh dibandingkan dengan sistem EBF. Daktilitas yang bagus adalah yang bernilai lebih dari 1, sehingga struktur tidak mudah runtuh. Pada kondisi linier, sistem CBF memiliki perilaku atau kinerja yang lebih baik ditunjukkan dengan penggunaan material, displacement maksimum dan drift ratio yang lebih kecil. Pada kondisi nonlinier, sistem ini (EBF)  memiliki perilaku maupun kinerja yang lebih baik terbukti dengan penyerapan energi dan daktilitas yang lebih baik.


2021 ◽  
Vol 237 ◽  
pp. 112225
Author(s):  
Yasin Onuralp Özkılıç ◽  
Mehmet Bakır Bozkurt ◽  
Cem Topkaya

1980 ◽  
Vol 106 (4) ◽  
pp. 843-860
Author(s):  
Ashok K. Jain ◽  
Subhash C. Goel

Author(s):  
Brian H. H. Peng ◽  
Gregory A. MacRae ◽  
Warren R. Walpole ◽  
Peter Moss ◽  
Rajesh Dhakal ◽  
...  

Several steel structure standards around the world contain an equation to encourage any column flexural yielding during earthquake shaking to occur at the column ends, rather than along the column length. The accuracy of these equations and their applicability to columns of both moment frames and braced frames are examined in this paper. It is shown, using an analytical procedure developed from first principles considering the reduction in member stiffness from axial force due to geometric and material nonlinearity, that the existing code equations are conservative. Less conservative empirical equations are developed based on the analysis results. It is found that these equations are applicable to frames with a braced connection, rather than a moment connection into the column. Time-history analysis of eccentrically-braced frames with inverted V-bracing, where the active link occurs at the centre of the beam, is carried out. The likely column end moment ratio needed for the new equations is determined. The analysis also shows that yielding often did not occur in the bottom story columns during earthquake excitations. A simple check is proposed to relate the axial force limit and the design drift to flexural yielding of columns which can be used in conjunction with the proposed equations.


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