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Seismic lateral movement prediction for gravity retaining walls on granular soils

机译:粒状土上重力式挡土墙的地震横向运动预测

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At present, methods based on allowable displacements are frequently used in the seismic design of earth retaining structures. However, these procedures ignore both the foundation soil deformability and the seismic amplification of the soil placed behind the retaining wall. Thus, they are not able to predict neither a rotational failure mechanism nor seismic induced lateral displacements with an acceptable degree of accuracy for the most general case. In this paper, a series of 2D finite-element analyses were carried out to study the seismic behavior of gravity retaining walls on normally consolidated granular soils. Chilean strong-motion records were applied at the bedrock level. An advanced non-linear constitutive model was used to represent both the backfill and foundation soil behavior. This elastoplastic model takes into account both the stress dependency of soil stiffness and coupling between shear and volumetric strains. In unloading-reloading cycles, the non-linear shear-modulus reduction with shear strain amplitude is considered. Interface elements were used to model soil-structure interaction. Routine-design charts were derived from the numerical analyses to predict the lateral movements at the base and top of gravity retaining walls located at sites with similar seismic characteristics to the Chilean subduction zone. Thus, wall seismic rotation can also be obtained. The developed charts consider wall dimensions, granular soil properties, bedrock depth, and seismic input motion characteristics. As shown, the proposed charts match well with available experimental data.
机译:目前,在土工结构的抗震设计中经常采用基于允许位移的方法。然而,这些程序既忽略了基础土壤的可变形性,也忽略了挡土墙后面的土壤的地震放大作用。因此,对于最一般的情况,他们既不能以可接受的精度来预测旋转破坏机制,也无法预测地震引起的横向位移。本文进行了一系列二维有限元分析,以研究重力固结墙在正常固结的颗粒土上的抗震性能。在基岩层应用了智利的强烈运动记录。先进的非线性本构模型用于表示回填和基础土的行为。该弹塑性模型考虑了土壤刚度的应力依赖性以及剪切应变与体积应变之间的耦合。在装卸循环中,考虑了具有剪切应变幅度的非线性剪切模量减小。界面元素被用来模拟土壤-结构相互作用。从数值分析中得出了常规设计图,以预测位于与智利俯冲带具有相似地震特征的地点的重力挡土墙的底部和顶部的横向运动。因此,还可以获得墙面地震旋转。绘制的图表将考虑墙的尺寸,颗粒状土壤的特性,基岩深度和地震输入运动特征。如图所示,建议的图表与可用的实验数据非常吻合。

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