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首页> 外文期刊>Journal of Earthquake Engineering >A KINEMATIC INTERACTION MODEL FOR A LARGE-DIAMETER SHAFT FOUNDATION. AN APPLICATION TO SEISMIC DEMAND ASSESSMENT OF A BRIDGE SUBJECT TO COUPLED SWAYING-ROCKING EXCITATION
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A KINEMATIC INTERACTION MODEL FOR A LARGE-DIAMETER SHAFT FOUNDATION. AN APPLICATION TO SEISMIC DEMAND ASSESSMENT OF A BRIDGE SUBJECT TO COUPLED SWAYING-ROCKING EXCITATION

机译:大直径轴基础的运动相互作用模型。摇晃耦合激励下桥梁桥梁地震需求评估的应用

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The aim of this paper is to illustrate an analytical model for the assessment of kinematic interaction of large-diameter shaft foundations. The model is derived using recently obtained solutions of soil structure interaction problems of rigid walls and fixed base cylinders subjected to a dynamic excitation. The proposed model constitutes an extension to a deformable base of the elastodynamic solution of a rigid, fixed-base cylinder imbedded in a homogeneous or inhomogeneous soil stratum with different lateral boundary conditions. The analytical model has been validated by means of a finite elements code and it has been implemented in a consistent seismic soil-structure-interaction analysis procedure. An application of the model to a long, multi-span continuous prestressed concrete viaduct with tall piers has been carried out focusing on the importance of kinematic interaction. The main finding of the study is that the foundation input motion is characterised not only by a translational horizontal component which is usually of a reduced amplitude if compared with the free-field ground motion, but also by a rotational component that is responsible for a large seismic demand in the superstructure. The proposed model represents an effective tool to be used in the engineering practice to assess both the seismic actions induced by the ground shaking on the foundation system and the effective input motion of a superstructure founded on massive and large diameter shafts.
机译:本文的目的是说明用于评估大直径竖井基础运动学相互作用的分析模型。该模型是使用刚获得的动力激励作用下的刚性壁和固定基筒的土壤结构相互作用问题的解导出的。所提出的模型构成了刚性,固定基圆柱的弹性动力学解的可变形基的扩展,该圆柱固定在具有不同侧向边界条件的均匀或不均匀土壤层中。该分析模型已通过有限元代码进行了验证,并已在一致的地震土-结构-相互作用分析程序中实施。着重于运动学相互作用的重要性,对该模型在长高跨度,高跨墩连续预应力混凝土高架桥上的应用进行了研究。该研究的主要发现是,基础输入运动的特征不仅在于平移水平分量(如果与自由场地震动相比,通常具有减小的振幅),还具有旋转分量,该分量负责较大的运动。上层建筑的地震需求。所提出的模型代表了一种有效的工具,可用于工程实践中,以评估基础系统上地面震动引起的地震作用以及基于大直径轴和大直径轴的上部结构的有效输入运动。

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