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ROBUST STOCHASTIC DESIGN OF BASE-ISOLATED STRUCTURAL SYSTEMS

机译:隔震结构系统的鲁棒随机设计

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摘要

The development of a general framework for robust reliability-based design of base-isolated structural systems under uncertain conditions is presented. The uncertainties about the structural parameters as well as the variability of future excitations are characterized in a probabilistic manner. Isolation elements composed of nonlinear lead rubber bearings are used to model the isolation system. The optimal design problem is formulated as a nonlinear constrained mini-mization problem involving multiple design requirements, including reliability constraints related to the structural performance. Failure events defined by a large number of random variables are used to characterize the reliability of the system. A sequential optimization approach based on global conservative, convex, and separable approximations is implemented for solving the optimization problem. An example problem that considers a 10-story building under stochastic ground excitation illustrates the beneficial effects of base-isolation systems in reducing the superstructure response.
机译:提出了在不确定条件下基础隔震结构系统基于鲁棒可靠性设计的通用框架的开发。有关结构参数的不确定性以及未来激发的可变性以概率方式表征。由非线性铅橡胶轴承组成的隔离元件用于对隔离系统进行建模。最佳设计问题被表述为涉及多个设计要求的非线性约束最小化问题,其中包括与结构性能有关的可靠性约束。由大量随机变量定义的故障事件用于表征系统的可靠性。为解决优化问题,采用了基于全局保守,凸和可分离逼近的顺序优化方法。考虑随机地面激励下的10层建筑物的示例问题说明了基础隔震系统在降低上部结构响应方面的有益作用。

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