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Numerical modeling and analysis of RC frames subjected to multiple earthquakes

机译:多次地震作用下钢筋混凝土框架的数值模拟与分析

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摘要

Earthquakes occur as a cluster in many regions around the world where complex fault systems exist. The repeated shaking usually induces accumulative damage to affected structures. Damage accumulation in structural systems increases their level of degradation in stiffness and also reduces their strength. Many existing analytical tools of modeling RC structures lack the salient damage features that account for stiffness and strength degradation resulting from repeated earthquake loading. Therefore, these tools are inadequate to study the response of structures in regions prone to multiple earthquakes hazard. The objective of this paper is twofold: (a) develop a tool that contains appropriate damage features for the numerical analysis of RC structures subjected to more than one earthquake; and (b) conduct a parametric study that investigates the effects of multiple earthquakes on the response of RC moment resisting frame systems. For this purpose, macroscopic constitutive models of concrete and steel materials that contain the aforementioned damage features and are capable of accurately capturing materials degrading behavior, are selected and implemented into fiber-based finite element software. Furthermore, finite element models that utilize the implemented concrete and steel stress-strain hysteresis are developed. The models are then subjected to selected sets of earthquake sequences. The results presented in this study clearly indicate that the response of degrading structural systems is appreciably influenced by strong-motion sequences in a manner that cannot be predicted from simple analysis. It also confirms that the effects of multiple earthquakes on earthquake safety can be very considerable.
机译:地震在世界上许多存在复杂断层系统的地区成簇发生。反复摇晃通常会引起对受影响结构的累积损坏。结构系统中的损伤累积会增加其刚度的降低水平,并且还会降低其强度。许多现有的对钢筋混凝土结构建模的分析工具都缺乏显着的破坏特征,这些特征说明了反复地震荷载导致的刚度和强度下降。因此,这些工具不足以研究易受多重地震危害的区域中结构的响应。本文的目的是双重的:(a)开发一种工具,该工具包含适当的损伤特征,用于对遭受多个地震的RC结构进行数值分析; (b)进行参数研究,研究多次地震对RC矩抗力框架系统响应的影响。为此,选择包含上述损坏特征并能够准确记录材料降解行为的混凝土和钢材的宏观本构模型,并将其实施到基于纤维的有限元软件中。此外,开发了利用已实现的混凝土和钢应力应变滞后的有限元模型。然后使模型经受选定的地震序列组。在这项研究中提出的结果清楚地表明,降解结构系统的响应受到强烈运动序列的明显影响,而这是无法通过简单分析来预测的。这也证实了多次地震对地震安全性的影响是非常可观的。

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