Probabilistic seismic response and reliability assessment of isolated bridges

被引:0
作者
Giuseppe Carlo Marano
机构
[1] Department of Environmental Engineering and Sustainable Development
[2] Technical University of Bari
[3] Taranto
[4] Italy
[5] Assistant
[6] Professor
关键词
bridge; seismic isolation; stochastic analysis; nonlinear softening constitutive law; reliability assessment;
D O I
暂无
中图分类号
U441.3 [];
学科分类号
0814 ; 081406 ;
摘要
<正>Bridge seismic isolation strategy is based on the reduction of shear forces transmitted from the superstructure to the piers by two means: shifting natural period and earthquake input energy reduction by dissipation concentrated in protection devices. In this paper, a stochastic analysis of a simple isolated bridge model for different bridge and device parameters is conducted to assess the efficiency of this seismic protection strategy. To achieve this aim, a simple nonlinear softening constitutive law is adopted to model a wide range of isolation devices, characterized by only three essential mechanical parameters. As a consequence of the random nature of seismic motion, a probabilistic analysis is carried out and the time modulated Kanai-Tajimi stochastic process is adopted to represent the seismic action. The response covariance in the state space is obtained by solving the Lyapunov equation for a stochastic linearized system. After a sensitivity analysis, the failure probability referred to extreme displacement and the mean value of dissipated energy are assessed by using the introduced stochastic indices of seismic bridge protection efficiency. A parametric analysis for protective devices with different mechanical parameters is developed for a proper selection of parameters of isolation devices under different situations.
引用
收藏
页码:100 / 111
页数:12
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