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Evaluation of Seismic Fragility of Weir Structures in South Korea

机译:韩国堰结构的地震易损性评估

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摘要

In order to reduce earthquake damage of multifunctional weir systems similar to a damstructure, this study focused on probabilistic seismic risk assessment of the weir structure using the fragility methodology based on Monte Carlo simulation (MCS), with emphasis on the uncertainties of the seismic ground motions in terms of near field induced pulse-like motions and far field faults. The 2D simple linear elastic plain strain finite element (FE) model including soil structure foundations using tie connection method in ABAQUS was developed to incorporate the uncertainty. In addition, five different limit states as safety criteria were defined for the seismic vulnerability of the weir system. As a consequence, the results obtained from multiple linear time history analyses revealed that the weir structure was more vulnerable to the tensile stress of the mass concrete in both near and far field ground motions specified earthquake hazard levels. In addition, the system subjected to near field motions was primarily more fragile than that under far field ground motions. On the other hand, the probability of failure due to the tensile stress at weir sill and stilling basin showed the similar trend in the overall peak ground acceleration levels.
机译:为了减少类似于大坝结构的多功能堰系统的地震破坏,本研究着重于使用基于蒙特卡罗模拟(MCS)的脆性方法对堰结构进行概率地震风险评估,重点在于地震地震动的不确定性就近场感应脉冲状运动和远场断层而言。为了克服这种不确定性,建立了二维简单线性弹性平原应变有限元模型,该模型包括了使用ABAQUS中的连接方法建立的土壤结构基础。此外,为堰系统的地震脆弱性定义了五个不同的极限状态作为安全标准。结果,从多个线性时程分析中获得的结果表明,在指定地震危险等级的近场和远场地面运动中,堰结构更容易受到大体积混凝土的拉应力。另外,经受近场运动的系统比远场地面运动的系统更脆弱。另一方面,由于堰基和静水盆处的拉应力而导致的失效概率在总体峰值地面加速度水平上显示出相似的趋势。

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  • 来源
    《Mathematical Problems in Engineering》 |2015年第10期|391569.1-391569.10|共10页
  • 作者

    Ju Bu Seog; Jung Woo Young;

  • 作者单位

    Gangneung Wonju Natl Univ, Inst Disaster Prevent, Kangnung 210702, South Korea.;

    Gangneung Wonju Natl Univ, Dept Civil Engn, Kangnung 210702, South Korea.;

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