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Sliding stability and seismic design of retaining wall by pseudo-dynamic method for passive case

机译:被动情况下挡土墙的滑动稳定性与拟动力法抗震设计。

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Knowledge of the influence of soil inertia and wall inertia on the design of a retaining wall is very important and more so under earthquake conditions. In this paper, by using the pseudo-dynamic seismic forces acting both on the soil and the wall, the design weight of the wall required under seismic conditions is determined under passive earth pressure conditions. The present pseudo-dynamic method considers time, phase difference and effect of amplification in shear and primary waves traveling through both the backfill and the retaining wall due to seismic excitation. A model rigid vertical retaining wall under passive earth pressure conditions with cohesionless backfill material has been considered in the present analysis. Results in graphical form show the non-linear variations of the soil passive resistance factor (F_T), wall inertia factor (F_I) and combined dynamic factor (F_w) with respect to the horizontal seismic acceleration coefficient (k_h), required for the design of the wall. The effects of parameters such as wall friction angle, soil friction angle, shear wave velocity, primary wave velocity, period of lateral shaking, horizontal and vertical seismic accelerations and amplification factor on the sliding stability of the retaining wall have been studied. With the increase of seismic accelerations both in horizontal and vertical directions, the sliding stability of the retaining wall decreases significantly.
机译:了解土壤惯性和墙惯性对挡土墙设计的影响非常重要,在地震条件下更是如此。在本文中,利用作用在土壤和墙壁上的拟动力地震力,在被动土压力条件下确定了地震条件下所需的墙壁设计重量。本伪动力学方法考虑了由于地震激励而在穿越回填和挡土墙的剪切波和主波中的时间,相位差和放大效应。在本分析中,已经考虑了在被动土压力条件下使用无粘性回填材料的刚性竖向挡土墙模型。图形形式的结果显示了土的被动抗力因子(F_T),墙惯性因子(F_I)和组合动力因子(F_w)相对于水平地震加速度系数(k_h)的非线性变化,墙。研究了墙体摩擦角,土体摩擦角,剪切波速度,一次波速度,横向振动周期,水平和垂直地震加速度以及放大系数等参数对挡土墙滑动稳定性的影响。随着水平和垂直方向地震加速度的增加,挡土墙的滑动稳定性大大降低。

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