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Inelastic response analysis of bridges subjected to non-stationary seismic excitations by efficient MCS based on explicit time-domain method

机译:基于明确时域法的高效MCS对非平稳地震激励的桥梁的无弹性响应分析

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摘要

This paper is devoted to stochastic response analysis of large-scale bridges with local plastic deformations under non-stationary random seismic excitations. A force-based fiber beam-column element is employed to simulate the inelastic behavior of bridges. By use of the explicit time-domain expressions of seismic responses, an effective dimension-reduced method is developed for fast inelastic time-history analysis of a structure with local nonlinearities. Only the nodal displacements that are associated with the inelastic elements need to be solved through iteration process, which leads to a significant reduction in computational cost for inelastic time-history analysis. With the merit of high efficiency, the dimension-reduced method is further used as a computational tool for repetitive inelastic time-history analyses in Monte Carlo simulation, and the statistical moments and mean peak values of critical responses can be readily achieved under random seismic excitations. To demonstrate the feasibility of the present approach, the nonlinear random vibration analysis of a long-span suspension bridge with a main span of 1200m is carried out under rare earthquakes, in which the inelastic behaviors of the main towers are investigated with the use of inelastic fiber elements.
机译:本文在非平稳随机地震激励下对局部塑性变形的大型桥梁随机响应分析。采用基于力的光纤光束柱元件来模拟桥梁的无弹性行为。通过使用地震反应的明确时域表达,开发了有效的尺寸减少方法,用于局部非线性的结构的快速无弹性时间历史分析。仅需要通过迭代过程解决与无弹性元件相关联的节点位移,这导致无弹性时间历史分析的计算成本显着降低。随着高效率的优点,尺寸减少的方法进一步用作蒙特卡罗模拟中的重复内弹性时历史分析的计算工具,并且在随机地震激励下可以容易地实现统计矩的统计矩和平均峰值。为了证明本方法的可行性,在稀有地震下进行了主要跨度1200m的长跨度悬架桥的非线性随机振动分析,其中通过使用无弹性来研究主塔的无弹性行为纤维元件。

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