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Influence of Strain Localization on Reliability Based Design of Bridge Abutments using Pseudo-Dynamic Method

机译:应变定位对基于可靠性的基于桥接电压设计的影响

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The paper focuses on reliability based design of bridge abutments when subjected to earthquake loading. Planar failure surface has been used in conjunction with pseudo-dynamic approach to compute the seismic active earth pressures on the bridge abutment. The proposed pseudo dynamic method, considers the effects of strain localization in the backfill soil and associated post-peak reduction in the shear resistance from peak to residual values along a previously formed failure plane, phase difference in shear waves and soil amplification along with the horizontal seismic accelerations. Four modes of stability viz. sliding, overturning, eccentricity and bearing capacity of the foundation soil are considered for the reliability analysis. The influence of various design parameters on the seismic reliability indices against four modes of failure is presented, following the suggestions of Japan Road Association, Caltrans Bridge Design Specifications and U.S Department of the Army.
机译:本文侧重于基于可靠性的桥梁抵抗性设计时的桥接抵抗力。平面故障表面已与伪动态方法结合使用,以计算桥梁上的地震主动接地压力。所提出的伪动态方法,考虑了沿前形成的故障平面的峰值与峰值与残余值的剪切阻力相关的应变定位的影响,剪切波和土壤放大与水平的相位差地震加速度。稳定性的四种模式。考虑了基础土壤的滑动,推翻,偏心和承载力,可用于可靠性分析。在日本公路协会,Caltrans桥设计规范和军队部门的建议之后,介绍了各种设计参数对抗四种失败模式的地震可靠性指标的影响。

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