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Nonlinear dynamic analysis of hysteretic mechanical systems by combining a novel rate-independent model and an explicit time integration method

机译:结合新型速率型号和明确时间集成方法,通过结合滞质机械系统的非线性动力学分析

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This paper presents a computational strategy that combines a novel rate-independent phenomenological model with an explicit time integration method to efficiently perform nonlinear dynamic analyses of non-stiffening hysteretic mechanical systems. The novel rate-independent model, developed by specializing a general class of uniaxial phenomenological models, has an algebraic nature, is based on a set of only three parameters having a clear mechanical significance, and can be easily implemented in a computer program. The adopted explicit structure-dependent time integration method, belonging to the Chang's family of explicit methods, is unconditionally stable for all non-stiffening hysteretic mechanical systems, has a second-order accuracy, does not suffer from numerical damping, and displays a small relative period error for small time step. Furthermore, it does not require iterative procedures and, consequently, does not suffer from convergence issues. Numerical accuracy and computational efficiency of the proposed procedure are assessed by performing several nonlinear time history analyses on hysteretic mechanical systems and comparing the results with those obtained by employing a conventional strategy based on the celebrated Bouc-Wen model, or its modified version, and the widely used Newmark's constant average acceleration method.
机译:本文介绍了一种计算策略,其结合了一种具有明确的时间集成方法的新型速率无关的现象学模型,以有效地执行非加强滞后机械系统的非线性动态分析。通过专业化的单轴现象学模型开发的新型速率无关模型,具有代数性质,基于一组仅具有明显的机械意义的三个参数,并且可以在计算机程序中容易地实现。采用的明确结构依赖时间集成方法,属于Chang的明确方法,对所有非加强滞后机械系统无条件稳定,具有二阶精度,不遭受数值阻尼,并显示一个小的相对短时间步骤的时间误差。此外,它不需要迭代程序,因此,不会遭受收敛问题。通过在滞后机械系统上进行几个非线性时间历史分析并将结果与​​通过基于庆祝的BOUC-WEN模型的传统策略进行比较来评估所提出的程序的数值准确性和计算效率广泛使用的纽马克的恒定平均加速方法。

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