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Dynamic Reliability-based Seismic Design Method of Nonlinear Multi-grid Composite Wall

机译:基于动态可靠性的非线性多电网复合墙地震设计方法

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Multi-grid composite wall is recently proposed for seismic resistance. A seismic design method for multi-grid composite wall based on dynamic reliability calculations using subset simulation method is proposed in this paper. A hysteretic model of multi-grid composite walls for nonlinear analysis is proposed according to the hysteretic curves obtained from cyclic lateral loading tests. Parameters of the trilinear envelope curve are obtained by empirical models and regression analysis. Parameters of the hysteretic rules are identified by least-squares method. Procedures of the seismic design method are presented. Initial design of the composite walls is made according to Chinese code for seismic design of buildings. Random earthquake ground motion model is obtained by multiplying time envelop function with Gaussian stationary processes. Parameters of the model are determined by Chinese code for seismic design of buildings. Subset simulation method is employed for failure probability calculations. Dynamic Reliability-based seismic design of a 6-story multi-grid composite wall with the aforementioned procedures is taken as an example to demonstrate the proposed method.
机译:最近提出了多电网复合墙用于地震抗性。本文提出了一种基于使用子集仿真方法的动态可靠性计算的多电网复合壁的地震设计方法。根据循环横向加载试验获得的滞后曲线提出了一种用于非线性分析的多电网复合壁的滞后模型。通过经验模型和回归分析获得三线性包络曲线的参数。通过最小二乘法识别滞后规则的参数。提出了地震设计方法的程序。复合墙的初始设计是根据中国建筑物的地震设计的代码制作的。通过将时间包围功能与高斯固定过程乘以随机地震地面运动模型获得。模型的参数由中国代码用于建筑物的地震设计决定。子集仿真方法用于失败概率计算。基于动态可靠性的6层多电网复合墙的地震设计,具有上述过程作为示例,以证明所提出的方法。

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