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首页> 外文期刊>Structure and Infrastructure Engineering: Maintenance, Management, Life-Cycle Design and Performance >Closed-form seismic fragility estimates, sensitivity analysis and importance measures for reinforced concrete columns in two-column bents
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Closed-form seismic fragility estimates, sensitivity analysis and importance measures for reinforced concrete columns in two-column bents

机译:两柱折弯中钢筋混凝土柱的闭合形式地震易损性估计,灵敏度分析和重要措施

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摘要

Closed-form seismic fragility estimates are developed for reinforced concrete (RC) columns in bridges with two-column bents. Deformation and shear modes of failure are considered. The closed-form solutions incorporate the important uncertainties associated with both structural properties and ground motion characteristics. Probabilistic capacity and demand models for RC columns in two-column bents are used for the fragility formulation. Sensitivity and importance measures are computed for the parameters and random variables, respectively, included in the limit state function expressed in terms of probabilistic capacity and demand models. The sensitivity measures suggest that the vulnerability of RC columns in two-column bents can be effectively improved by using high strength reinforcement for the column confinement, reducing the spacing between confining reinforcement, and limiting the use of high strength concrete. The importance measures suggest that the random errors in the probabilistic capacity and demand models represent the principal sources of uncertainty. Thus, an approximate closed-form solution for a fragility estimation of a RC column can be developed by considering only the uncertainty in the random errors of the capacity and demand models. Only a marginal difference exists between the closed-form fragility estimates and the corresponding predictive fragility estimates that include all uncertainties.
机译:针对具有两列弯头的桥梁中的钢筋混凝土(RC)柱,开发了闭合形式的地震易损性估计。考虑破坏的变形和剪切模式。封闭形式的解决方案包含与结构特性和地震动特性相关的重要不确定性。在两列折弯中,RC柱的概率容量和需求模型用于脆弱性公式。分别针对以概率容量和需求模型表示的极限状态函数中包含的参数和随机变量,计算灵敏度和重要性度量。敏感性措施表明,通过在柱约束中使用高强度钢筋,减小约束钢筋之间的间距以及限制使用高强度混凝土,可以有效地改善RC柱在两列弯曲中的脆弱性。重要性度量表明,概率能力和需求模型中的随机误差是不确定性的主要来源。因此,可以通过仅考虑容量和需求模型的随机误差中的不确定性来开发用于RC柱脆性估计的近似封闭形式解决方案。在封闭形式的易损性估计值和包括所有不确定性的相应预测性易碎性估计值之间仅存在边际差异。

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