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Seismic safety of structures: Influence of soil-flexibility, asymmetry and ground motion characteristics

机译:结构的地震安全性:土的柔韧性,不对称性和地震动特性的影响

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Structures may experience degradation in strength in the event of strong seismic shaking. A rational estimation of the reserve strength of the structures is often desired in the process of retrofitting or strengthening the same. To achieve this end, the present paper confirms the suitability of an existing hysteresis model in reproducing experimental load-displacement characteristics for reinforced concrete (R/C) structural members. Attempt has also been made for rational and realistic estimation of the degradation parameter required for the model in absence of any case-specific calibrated value. Subsequently, post-earthquake behaviour of the low-rise symmetric structures is assessed with and without accounting for the effect of soil-structure interaction. Such response for low-rise multistorey systems with regular asymmetry has also been investigated in the sample form. To develop insight into the behaviour of asymmetric (unidirectional and bi-directional) systems, detailed investigation has been made on idealized single-storey asymmetric systems under simulated and real ground motions with different phase difference or time lag variation. This suggests a serious implication of occurrence of peaks of the ground motions on the seismic performance of bi-directionally eccentric structures and indicates a relatively higher torsional vulnerability of bi-directionally eccentric system compared to equivalent uni-directional counterpart. The results along with the endeavour toward measuring the ductility capacity for R/C structural members based on the systematic observation and interpretation of the available experimental results, made in the paper, may prove useful in evaluating the seismic safety of low-rise R/C structures. (C) 2007 Elsevier Ltd. All rights reserved.
机译:如果发生强烈的地震,结构可能会发生强度下降。在翻新或加固结构的过程中,经常需要对结构的储备强度进行合理的估算。为了达到这个目的,本文证实了现有的滞后模型在再现钢筋混凝土(R / C)结构构件的实验荷载-位移特性中的适用性。还尝试了在没有任何案例特定的校准值的情况下,对模型所需的降级参数进行合理和现实的估计。随后,在不考虑土壤与结构相互作用的影响的情况下,评估了低层对称结构的地震后行为。对具有规则不对称性的低层多层系统的这种响应也已经以样本形式进行了研究。为了深入了解非对称(单向和双向)系统的行为,已对具有不同相位差或时滞变化的模拟和真实地震动下理想的单层非对称系统进行了详细研究。这表明,地震动峰值的出现对双向偏心结构的抗震性能具有严重的影响,并且表明双向偏心系统与等效的单向对应物相比具有相对较高的扭转脆弱性。本文的结果以及基于对现有实验结果的系统观察和解释而对R / C结构构件的延性能力进行测量的努力,可能被证明可用于评估低层R / C的地震安全性结构。 (C)2007 Elsevier Ltd.保留所有权利。

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