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Stochastic finite element analysis of long-span bridges with CFRP cables under earthquake ground motion

机译:地震地震动下CFRP电缆大跨度桥梁随机有限元分析

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摘要

Stochastic seismic analysis of long-span bridges with Carbon fibre reinforced polymer (CFRP) cables are presented in this study through combination of the advantages of the perturbation based stochastic finite element method (SFEM) and Monte Carlo simulation (MCS) method. Jindo cable-stayed and Fatih Sultan Mehmet (Second Bosporus) suspension bridges are chosen as an example. Carbon fibre reinforced polymer cable (CFRP) and steel cables are used separately, in which the cable's cross sectional area is determined by the principle equivalent axial stiffness. Geometric nonlinear effects are considered in the analysis. Uncertainties in the material are taken into account and Kocaeli earthquake in 1999 is chosen as a ground motion. The efficiency and accuracy of the proposed algorithm are validated by comparing with results of MCS method. It can be stated that using of CFRP cables in long-span bridges subjected to earthquake forces is feasible.
机译:通过将基于扰动的随机有限元方法(SFEM)和蒙特卡罗模拟(MCS)方法的优点相结合,对采用碳纤维增强聚合物(CFRP)电缆的大跨度桥梁进行了随机地震分析。以Jindo斜拉桥和Fatih Sultan Mehmet(第二博斯普鲁斯海峡)悬索桥为例。碳纤维增强聚合物电缆(CFRP)和钢缆分开使用,电缆的横截面积由等效轴向刚度原理确定。分析中考虑了几何非线性效应。考虑到材料的不确定性,并选择了1999年的Kocaeli地震作为地震动。通过与MCS方法的比较,验证了算法的有效性和准确性。可以说,在地震作用下的大跨度桥梁中使用CFRP电缆是可行的。

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