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A Unified Analysis Model For Energy Dissipation Devices Used In Seismic Structures

机译:地震结构耗能装置的统一分析模型

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摘要

To date, various types of energy dissipation devices (EDDs) have been invented and applied to structural systems for mitigating their seismic responses. An elastic structure with EDDs can be treated as a nonlinear dynamic system with hysteretic property. Due to the diversity of the hysteretic properties of various EDDs, it is difficult to obtain a generic analysis method that can be applied to structures with different EDDs. In this study, a unified analysis model containing an internal variable is proposed for simulating the hysteretic behavior of various types of EDDs. By assigning different physical meanings to the internal variable, the model is able to simulate three types of widely used EDDs, namely, yielding, viscoelastic, and friction dampers. The unified model is also able to simulate nonlinear viscous dampers whose velocity terms have an exponential coefficient not equal to 1.0. Furthermore, based on this model, this article also developes a numerical analysis method derived from the discrete-time solution of a state-space equation. Without requiring iteration at each computational time step, the numerical method is able to accurately simulate the hysteretic properties of the three kinds of EDDs. The accuracy and efficiency of the proposed analysis method is investigated by using the analytical solution of a nonlinear system governed by Duffing's equation, and also by using a seismic structure equipped with multiple EDDs.
机译:迄今为止,已经发明了各种类型的能量消散装置(EDD),并将其应用于减轻其地震响应的结构系统。具有EDDs的弹性结构可以视为具有滞后特性的非线性动力系统。由于各种EDD的磁滞特性的多样性,因此很难获得可应用于具有不同EDD的结构的通用分析方法。在这项研究中,提出了一个包含内部变量的统一分析模型,用于模拟各种类型的EDD的磁滞行为。通过为内部变量分配不同的物理含义,该模型能够模拟三种类型的广泛使用的EDD,即屈服,粘弹性和摩擦阻尼器。统一模型还能够模拟其速度项的指数系数不等于1.0的非线性粘性阻尼器。此外,基于此模型,本文还开发了一种从状态空间方程的离散时间解导出的数值分析方法。该数值方法无需在每个计算时间步上进行迭代,就能够准确地模拟三种EDD的磁滞特性。通过使用由Duffing方程控制的非线性系统的解析解以及具有多个EDD的地震结构,研究了所提出分析方法的准确性和效率。

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