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首页> 外文期刊>Journal of bridge engineering >Optimum Design of Bridge Abutments under Seismic Conditions: Reliability-Based Approach
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Optimum Design of Bridge Abutments under Seismic Conditions: Reliability-Based Approach

机译:地震条件下桥台的优化设计:基于可靠性的方法

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摘要

The paper focuses on the reliability-based design optimization of gravity wall bridge abutments when subjected to active condition during earthquakes. An analytical study considering the effect of uncertainties in the seismic analysis of bridge abutments is presented. Planar failure surface has been considered in conjunction with the pseudostatic limit equilibrium method for the calculation of the seismic active earth pressure. Analysis is conducted to evaluate the external stability of bridge abutments when subjected to earthquake loads. Reliability analysis is used to estimate the probability of failure in three modes of failure viz. sliding failure of the wall on its base, overturning failure about its toe (or eccentricity failure of the resultant force) and bearing failure of foundation soil below the base of wall. The properties of backfill and foundation soil below the base of abutment are treated as random variables. In addition, the uncertainties associated with characteristics of earthquake ground motions such as horizontal seismic acceleration and shear wave velocity propagating through backfill soil are considered. The optimum proportions of the abutment needed to maintain the stability are obtained against three modes of failure by targeting various component and system reliability indices. Studies have also been made to study the influence of various parameters on the seismic stability.
机译:本文重点研究地震作用下重力墙桥台在活动状态下的可靠性设计优化。提出了一种分析研究,该研究考虑了不确定性在桥梁桥台地震分析中的影响。已经考虑了平面破坏面和拟静力极限平衡法一起用于地震活动土压力的计算。进行分析以评估桥梁基台在地震荷载作用下的外部稳定性。可靠性分析用于估计三种故障模式下的故障概率。墙体在其底部的滑动破坏,脚趾的倾覆破坏(或合力的偏心破坏)以及墙体底部下方的基础土的承载破坏。桥基下方的回填土和基础土的性质被视为随机变量。另外,还考虑了与地震地震动特征相关的不确定性,例如水平地震加速度和通过回填土传播的剪切波速度。通过针对各种组件和系统可靠性指标,针对三种失效模式获得了保持稳定性所需的最佳基台比例。还进行了研究以研究各种参数对地震稳定性的影响。

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