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Statistical linearization based estimation of the peak response of nonlinear systems subject to the EC8 design spectrum

机译:基于统计线性化基于EC8设计谱的非线性系统峰值响应的估计

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A stochastic approach is proposed to obtain reliable estimates of the peak response of nonlinear systems to excitations specified via a response/design seismic spectrum. This is achieved without resorting to numerical integration of the governing nonlinear equations of motion. First, a numerical scheme is utilized to derive a power spectrum which is compatible in a stochastic sense to a given elastic design spectrum. This spectrum is then treated as the excitation spectrum in the context of the statistical linearization method to determine effective parameters, damping and stiffness, corresponding to an equivalent linear system (ELS). The obtained parameters are used in conjunction with the linear design spectrum, for various values of damping, to estimate the response of certain nonlinear systems. The case of single-degree-of-freedom systems with cubic stiffness nonlinearity and hysteretic systems whose restoring force traces a bilinear law are considered in conjunction with the elastic design spectrum prescribed by the European aseismic code provisions (EC8). Monte Carlo simulations pertaining to an ensemble of non-stationary EC 8 design spectrum compatible accelerograms are conducted to confirm that the average peak response of the nonlinear systems compare reasonably well with that of the ELS. This is true, even in cases where the response of the nonlinear oscillators deviates significantly from the linear one. In this manner, the proposed approach yields ELS which can reliably replace the original nonlinear systems in carrying out computationally efficient analyses in the initial stages of the aseismic design of structures under severe seismic excitations. Furthermore, the potential of this approach for developing inelastic design spectra from a given elastic design spectrum is established.
机译:提出了一种随机方法,以获得非线性系统的峰值响应的可靠估计,以通过响应/设计地震谱指定的激励。在不诉诸控制非线性方程的数值积分的情况下实现了这一点。首先,利用数值方案来导出在对给定弹性设计光谱的随机意义上兼容的功率谱。然后在统计线性化方法的上下文中处理该频谱作为激发谱,以确定对应于等效线性系统(ELS)的有效参数,阻尼和刚度。所获得的参数与线性设计光谱结合使用,用于各种阻尼值,以估计某些非线性系统的响应。具有立方刚度非线性和滞后系统的单级自由度系统的情况,其恢复力迹线的滞留法与欧洲抗震规范(EC8)规定的弹性设计谱一起考虑了双线性定律。蒙特卡罗与非静止EC 8设计谱兼容加速器臂的集合有关,以确认非线性系统的平均峰值响应与ELS的平均峰值相比。即使在非线性振荡器的响应显着地从线性偏差偏离的情况下,这也是如此。以这种方式,所提出的方法产生ELS,该方法可以可靠地取代原始非线性系统,以便在严重地震激发下的结构的爆发结构的初始阶段进行计算有效分析。此外,建立了从给定弹性设计光谱中开发内部设计光谱的这种方法的潜力。

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