Period elongation of steel moment-resisting frames with strength and stiffness deterioration in incremental dynamic analysis

IF 3.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Amin Norouzi, Mehdi Poursha, Aydin Daei
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Abstract

Change in the fundamental period of a structure during strong earthquakes (the change from the linear to nonlinear period) can be a good indicator of the damage level of the structure. Given that the incremental dynamic analysis (IDA) has played an effective role in investigating the nonlinear behavior of engineering structures, in this article, we try to use the nonlinear (fundamental) period of the structure as a damage criterion in IDA curves for multi-degree-of-freedom (MDOF) systems, which was previously introduced for single-degree-of-freedom (SDOF) systems. In this regard, the nonlinear period at different seismic intensity levels and the collapse threshold period of steel moment-resisting frame (SMRF) structures are studied by considering the spectral shape indicators of earthquake records, and the strength and stiffness deterioration parameter. For this purpose, three regular SMRF buildings with 3, 10, and 20 stories as representatives of low-, medium-, and high-rise buildings are investigated. Fast Fourier transform (FFT) is used to calculate the nonlinear period of the structures, and the eigenvalue analysis method by using the instantaneous characteristics (stiffness) of the structure is implemented to confirm it. To perform the time history analysis, the bilinear modified Ibarra-Medina-Krawinkler (IMK) model is used in modeling the structural hysteretic behavior. One of the important applications of the nonlinear period of structures is in the process of scaling records for time history analysis. This study intends to evaluate the scaling period range by computing the nonlinear period based on the records scaled to the design spectrum. The results demonstrate that the spectral shape parameters and the structural deterioration affect the nonlinear period of the case study structures in a regular manner, while the effect of the mentioned spectral parameters on the collapse threshold period does not follow a clear trend. Also, it is shown that the upper bound period (1.5\(\:{\text{T}}_{\text{1}}\) or 2\(\:{\text{T}}_{\text{1}}\)) mode period for scaling ground motions is too conservative for structures with a special SMRF load-resisting system having a low deterioration.

Abstract Image

增量动力分析中抗弯矩钢框架强度和刚度劣化的周期伸长
强震时结构基本周期的变化(从线性周期到非线性周期的变化)可以很好地反映结构的损伤程度。考虑到增量动力分析(IDA)在研究工程结构的非线性行为方面发挥了有效的作用,在本文中,我们尝试将结构的非线性(基本)周期作为多自由度(MDOF)体系的IDA曲线的损伤判据,该判据以前是用于单自由度(SDOF)体系的。为此,考虑地震记录的谱形指标和强度刚度劣化参数,研究了钢抗弯矩框架(SMRF)结构在不同烈度下的非线性周期和倒塌阈值周期。为此,我们研究了3层、10层和20层的普通SMRF建筑,分别作为低层、中层和高层建筑的代表。采用快速傅里叶变换(FFT)计算结构的非线性周期,并利用结构的瞬时特性(刚度)进行特征值分析。为了进行时程分析,采用双线性修正Ibarra-Medina-Krawinkler (IMK)模型对结构的滞回行为进行建模。结构非线性周期的重要应用之一是对时程分析进行标度记录。本研究拟通过计算非线性周期来评估标度周期范围,该周期是基于标度到设计谱的记录。结果表明,光谱形状参数和结构劣化对案例结构的非线性周期有规律的影响,而上述光谱参数对倒塌阈值周期的影响没有明显的趋势。此外,对于具有低劣化的特殊SMRF抗荷载系统的结构,标化地震动的上界周期(1.5 \(\:{\text{T}}_{\text{1}}\)或2 \(\:{\text{T}}_{\text{1}}\))模态周期过于保守。
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来源期刊
Bulletin of Earthquake Engineering
Bulletin of Earthquake Engineering 工程技术-地球科学综合
CiteScore
8.90
自引率
19.60%
发文量
263
审稿时长
7.5 months
期刊介绍: Bulletin of Earthquake Engineering presents original, peer-reviewed papers on research related to the broad spectrum of earthquake engineering. The journal offers a forum for presentation and discussion of such matters as European damaging earthquakes, new developments in earthquake regulations, and national policies applied after major seismic events, including strengthening of existing buildings. Coverage includes seismic hazard studies and methods for mitigation of risk; earthquake source mechanism and strong motion characterization and their use for engineering applications; geological and geotechnical site conditions under earthquake excitations; cyclic behavior of soils; analysis and design of earth structures and foundations under seismic conditions; zonation and microzonation methodologies; earthquake scenarios and vulnerability assessments; earthquake codes and improvements, and much more. This is the Official Publication of the European Association for Earthquake Engineering.
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