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Seismic Stability of Gravity Retaining Structures by Pseudo-Dynamic Method

机译:基于赝动力法的重力支护结构抗震稳定性研究

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摘要

An analytical expression of a gravity retaining wall's seismic stability against sliding and overturning is proposed in this article. The derivation, aiming at the cohesionless soil with inclined backfill surface and nonvertical wall back, is based on limit equilibrium analysis and the pseudo-dynamic method. The variations of the sliding and overturning stability safe factors with the horizontal seismic acceleration are investigated for different seismic amplification factors, soil friction angles, wall friction angles, vertical seismic acceleration coefficients, wall back inclination angles, and backfill surface inclination angles. The results indicate that the soil friction and horizontal seismic action significantly impact the seismic stability. The increase of vertical earthquake action changes the curvature of stability factor curves. The wall friction and back inclination strengthen the gravity retaining wall's resistance to sliding and overturning failure while the backfill surface inclination plays a negative role in the seismic stability. We also found that the seismic stability safe factors calculated by the proposed method are larger but more reasonable than those by the Mononobe-Okabe method.
机译:本文提出了重力挡土墙抗滑倾覆抗震稳定性的解析表达式。针对倾斜回填面、非垂直墙背的无黏性土,基于极限平衡分析和拟动力方法推导了该方法。研究了不同地震放大因子、土体摩擦角、墙面摩擦角、竖向地震加速度系数、墙体背倾角和回填面倾角随水平地震加速度的变化规律。结果表明,土体摩擦力和水平地震作用对地震稳定性有显著影响。垂直地震作用的增加改变了稳定因子曲线的曲率。墙体摩擦力和背倾力增强了重力挡土墙的抗滑倾覆破坏能力,而回填面倾角对地震稳定性起负作用。我们还发现,所提方法计算的地震稳定性安全系数比Mononobe-Okabe方法更大但更合理。

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