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Reliability-based vector nonstationary random critical earthquake excitations for parametrically excited systems

机译:参数激励系统的基于可靠性的矢量非平稳随机临界地震激励

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摘要

The study considers the earthquake response of stack-like structures subjected to simultaneous action of random horizontal and vertical earthquake acceleration components. The governing equation of motion in this case is approximated by a set of coupled randomly time varying ordinary differential equations. The components of earthquake accelerations are modelled as nonstationary Gaussian random processes that are obtained by multiplying deterministic modulating functions with partially specified stationary random processes. Specifically, it is assumed that the matrix of power spectral density (psd) functions of the stationary components is not known, while, the variance, average rate of zero crossings, entropy rate and frequency range of interest are taken to be known. The unknown input psd matrix is determined such that the reliability index associated with a specified structure performance function is minimized. The solution procedure employed, combines the theory of Hasofer-Lind reliability indices, response surface modelling and constrained nonlinear optimization tools. The critical input psd matrix so obtained leads to the definition of excitation models that produce the least favorable response, which, at the same time, possess a few of the well known properties of earthquake loads. A numerical example that illustrates the concepts developed with reference to a chimney structure is provided.
机译:研究考虑了在水平和垂直随机地震加速度分量同时作用下的叠层结构的地震反应。在这种情况下,运动的控制方程由一组耦合的随时间变化的常微分方程近似。地震加速度的分量被建模为非平稳高斯随机过程,该过程是通过将确定性调制函数与部分指定的平稳随机过程相乘而获得的。具体来说,假设静止组件的功率谱密度(psd)函数矩阵未知,而方差,零交叉的平均速率,熵速率和感兴趣的频率范围已知。确定未知输入psd矩阵,以使与指定结构性能函数关联的可靠性指标最小。采用的求解程序结合了Hasofer-Lind可靠性指标理论,响应面建模和约束非线性优化工具。如此获得的临界输入psd矩阵导致了产生最小响应的激励模型的定义,该模型同时具有一些众所周知的地震荷载特性。提供了一个数字示例,该示例说明了参照烟囱结构开发的概念。

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