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Damage Mechanics Modeling of Nonlinear Seismic Behavior of Concrete Structures

机译:混凝土结构非线性地震行为的损伤力学建模

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摘要

Performance-based design of structures is becoming the preferred seismic design method. Its use requires special numerical programs capable of predicting the performance of structures during a seismic event well into the nonlinear range. Seismic analysis results obtained from these programs depend on the types of elements and constitutive material laws used. For one type of element used, the results can be sensitive to the size of the elements. This paper presents a simplified finite-element analysis program based on multilayer elements and damage mechanics modeling of concrete behavior. A method to identify the various parameters required to define the behavior of the different materials is presented and some guidance on structural modeling using this type of program is provided. This program is used to predict the behavior of three different structures: overreinforced normal-strength concrete and high-strength concrete (HSC) beams tested monotonically, HSC columns tested under constant axial load and cyclic flexure, and bridge piers subjected to earthquake-type loading by the pseudodynamic test method. It is shown that predictions are in excellent agreement with experimental results.
机译:基于性能的结构设计正成为首选的抗震设计方法。它的使用需要特殊的数值程序,这些程序能够预测地震事件期间非线性范围内的结构性能。从这些程序获得的地震分析结果取决于所用单元的类型和本构材料定律。对于所用元素的一种类型,结果可能对元素的大小敏感。本文提出了一个基于多层单元和混凝土行为的损伤力学建模的简化有限元分析程序。提出了一种识别定义不同材料行为所需的各种参数的方法,并提供了使用此类程序进行结构建模的一些指导。该程序用于预测三种不同结构的性能:单调测试的超强正强度混凝土和高强度混凝土(HSC)梁,在恒定轴向载荷和循环挠曲下测试的HSC柱以及承受地震型载荷的桥墩通过拟动力试验方法。结果表明,预测结果与实验结果非常吻合。

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