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Shear Plastic Constitutive Behavior for Near-Fault Ground Motion

机译:近端故障地面运动的剪切塑性本构行为

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The analysis of structures subjected to earthquake actions can be carried out by means of several methods with different levels of accuracy, among which the nonlinear dynamics is generally recognized as the most reliable one. This paper presents a general treatment to develop approximate solutions for rigid-plastic response of structures subjected to base harmonic pulse, by means of a numerical procedure on-purpose developed. The case study is a vertical cantilever beam, with base support, constant mass, and inertia distribution, subjected to only ground acceleration. The failure is assumed depending on the formation of a single shear hinge and the results are expressed in general terms. As a result, the motion proceeds through successive spreading and contractions of the plastic front and related elastic returns. Possible applications of the method to real structures can be envisaged. (C) 2017 American Society of Civil Engineers.
机译:经受地震作用的结构的分析可以通过几种具有不同精度水平的方法进行,其中非线性动力学通常被认为是最可靠的。 本文借助于开发的数值手术,开发了对基础谐波脉冲的结构的刚性塑性响应的近似解。 案例研究是垂直悬臂梁,基本支撑,恒定质量和惯性分布,仅受到地面加速度。 假设根据单剪切铰链的形成,并且结果以一般术语表示。 结果,运动通过塑料前沿的连续传播和收缩和相关的弹性回报进行。 可以设想该方法的可能应用来实现实际结构。 (c)2017美国土木工程师协会。

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