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Identification of an extended Bouc–Wen model with application to seismic protection through hysteretic devices

机译:扩展的Bouc–Wen模型的识别及其在通过磁滞装置进行地震防护中的应用

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摘要

In this paper is proposed an extended Bouc–Wen model for improving its capability to approximate experimental symmetric hysteretic loops. On the basis of the generalized equation there are defined integral and differential conditions that describe the essential geometric properties of a hysteretic curve. Next, a new method based on Genetic Algorithms is developed to identify the Bouc–Wen model parameters from experimental hysteretic loops obtained from periodic loading tests. The performance of presented approach is illustrated for two types of seismic protection devices with hysteretic characteristics: elastomeric base isolators and buckling restrained dissipative braces. The applicability of proposed method is highlighted by using the derived models to analyse by numerical simulation the efficiency of these devices for reducing seismic response of a three stories civil structure. Keywords Mechanics - Vibration - Hysteresis - Inverse problem - Modeling - Seismic protection
机译:本文提出了一种扩展的Bouc–Wen模型,以提高其逼近实验对称磁滞回线的能力。在广义方程的基础上,定义了积分和微分条件,这些条件描述了磁滞曲线的基本几何特性。接下来,开发了一种基于遗传算法的新方法,该方法可从周期性载荷试验获得的实验滞回回路中识别Bouc–Wen模型参数。针对具有滞回特性的两种类型的地震防护设备,说明了所提出方法的性能:弹性体基础隔离器和屈曲约束耗散支撑。通过使用导出的模型通过数值模拟分析这些设备降低三层民用建筑地震响应的效率,突出了所提出方法的适用性。关键字力学-振动-滞后-反问题-建模-抗震

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