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Adaptive time stepping in pseudo-dynamic testing of earthquake driven structures

机译:地震驱动结构拟动力试验中的自适应时间步长

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The problem of assessing errors in implementing time-marching algorithms in the context of pseudo-dynamic seismic testing of structures is considered. These errors occur in implementing the numerical and experimental steps of the test procedure. The study investigates how a linearized variational equation can be augmented with the governing equation of motion to track the effect of the errors, and, accordingly, adjust the step size of integration adaptively to keep a global error norm within specified limits. The governing augmented equations are integrated using an explicit operator splitting scheme. Additional efforts, in terms of evaluation of the tangent stiffness matrix, are shown to become necessary while modelling the errors. Illustrative examples include numerical studies on a set of nonlinear systems and an experimental study on a geometrically nonlinear two-storied building frame. The experimental results from pseudo-dynamic test are shown to compare reasonably well with pertinent results from an effective force test.
机译:考虑了在结构的拟动力地震测试中评估时间误差算法时评估误差的问题。在执行测试过程的数字和实验步骤时会发生这些错误。这项研究调查了如何通过运动的控制方程来扩展线性化的变分方程,以跟踪误差的影响,并相应地调整积分的步长,以将全局误差范数保持在指定的范围内。控制扩展方程使用显式算子拆分方案进行集成。在对误差进行建模时,显示出在切线刚度矩阵的评估方面需要进行额外的工作。说明性示例包括对一组非线性系统的数值研究和对几何非线性两层建筑框架的实验研究。结果表明,拟动力试验的实验结果可以与有效力试验的相关结果进行比较。

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