Target-drift seismic-force-based design of one-story reinforced concrete precast buildings considering the requirements of the second generation of the Eurocode 8 standard

IF 4.3 2区 工程技术 Q1 ENGINEERING, CIVIL Earthquake Engineering & Structural Dynamics Pub Date : 2024-10-22 DOI:10.1002/eqe.4260
Tatjana Isaković
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Abstract

Results are presented concerning the force-based design of a wide range of reinforced concrete, single-story precast buildings, considering the requirements of the new Eurocode 8 standard. The relevant criterion defining the cross-sectional dimensions of the columns was the 2% drift limitation. Buildings were designed considering a behavior factor of 3 and a 50% reduction in stiffness corresponding to the gross cross-section. The design evaluation, using a nonlinear pushover analysis, revealed that all the buildings could expect approximately twice the drift considered in the design with significant second-order effects, particularly in very tall columns. The main reasons for large discrepancies between the elastic and nonlinear analyses were the arbitrarily selected behavior factor and the arbitrarily selected reduction in stiffness corresponding to the gross cross-section (the stiffness considered in the design was approximately double what the nonlinear analysis revealed). The analysis revealed that these two quantities are closely correlated. Once the dimensions of the columns had been selected, the force and initial stiffness reduction could not be chosen arbitrarily. Correlations were determined between the column dimensions, theoretical stiffness reduction, seismic force reduction (behavior factor) and second-order effects. From these correlations, a new target-drift force-based design methodology was proposed. All considered buildings were redesigned using the proposed method. The results of the new design and the nonlinear-pushover-based analysis correlated well.

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根据第二代欧洲规范 8 标准的要求,对单层钢筋混凝土预制建筑进行基于目标漂移地震力的设计
考虑到新的欧洲规范8标准的要求,提出了关于广泛的钢筋混凝土单层预制建筑的基于力的设计结果。确定柱截面尺寸的相关标准是2%的漂移限制。建筑的设计考虑了3的行为系数和50%的相对于总横截面的刚度降低。设计评估,使用非线性推挤分析,揭示了所有的建筑物可以预期大约两倍的漂移在设计中考虑显著的二阶效应,特别是在非常高的柱。弹性分析和非线性分析之间存在较大差异的主要原因是任意选择的行为因素和任意选择的与总横截面对应的刚度减小(设计中考虑的刚度大约是非线性分析显示的两倍)。分析表明,这两个量是密切相关的。一旦确定了柱的尺寸,就不能随意选择力和初始刚度折减。确定了柱尺寸、理论刚度减值、地震力减值(行为因子)和二阶效应之间的相关性。根据这些相关性,提出了一种新的基于目标漂移力的设计方法。所有被考虑的建筑都使用提出的方法进行了重新设计。新设计的结果与基于非线性推杆的分析结果具有良好的相关性。
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来源期刊
Earthquake Engineering & Structural Dynamics
Earthquake Engineering & Structural Dynamics 工程技术-工程:地质
CiteScore
7.20
自引率
13.30%
发文量
180
审稿时长
4.8 months
期刊介绍: Earthquake Engineering and Structural Dynamics provides a forum for the publication of papers on several aspects of engineering related to earthquakes. The problems in this field, and their solutions, are international in character and require knowledge of several traditional disciplines; the Journal will reflect this. Papers that may be relevant but do not emphasize earthquake engineering and related structural dynamics are not suitable for the Journal. Relevant topics include the following: ground motions for analysis and design geotechnical earthquake engineering probabilistic and deterministic methods of dynamic analysis experimental behaviour of structures seismic protective systems system identification risk assessment seismic code requirements methods for earthquake-resistant design and retrofit of structures.
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