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Earthquake-induced Displacements Of Gravity Retaining Walls And Anchor-reinforced Slopes

机译:地震引起的重力挡土墙和锚固边坡位移

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This paper examines in terms of seismic performance, the effectiveness of anchor reinforcement against gravity retaining walls used to stabilize a dry homogenous fill slope in earthquake-prone environment. Both analyzed stabilizing measures have the same design yield acceleration estimated from a limit equilibrium approach. The earthquake-induced displacements are calculated using a sliding block formulation of the equation of motion. Sliding failure along the base of the gravity retaining wall and rotational failure of the soil active wedge behind the wall, as well as rotational failure of the slide mass of the anchor-reinforced slope were considered in the present formulation. For the specific characteristics of the analyzed fill slope and input horizontal ground motion, the slope reinforced with anchors appears to experience vertical and horizontal seismic displacements at slope crest smaller by 12% and respectively, 32% than the vertical and horizontal earthquake-induced deformations estimated at the top of the active wedge behind the gravity retaining wall.
机译:本文从地震性能的角度研究了锚固加固对重力挡土墙的有效性,这些重力挡土墙用于在地震多发环境中稳定干燥的均质填充边坡。两种分析的稳定措施均具有通过极限平衡法估算的相同设计屈服加速。使用运动方程的滑块公式计算地震引起的位移。在本公式中考虑了沿重力挡土墙底部的滑动破坏和墙后土体活动楔块的旋转破坏以及锚固加固斜坡的滑动块的旋转破坏。对于所分析的填土坡度和输入水平地面运动的特定特征,用锚加固的坡度似乎在坡顶经历了垂直和水平地震位移,分别比估计的垂直和水平地震诱发的变形分别小了12%和32%。位于重力挡土墙后面的活动楔块的顶部。

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