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DISPLACEMENT-BASED DESIGN OF SHALLOW FOUNDATIONS WITH MACROELEMENT

机译:基于位移的宏单元浅层基础设计

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The scope of this paper is to demonstrate the utility of macroelement modeling of shallow foundations in performance-based design. We focus on the settlements, horizontal displacements and rotations of a bridge pier founded on a rigid circular foundation on a relatively soft cohesive soil. A newly developed macroelement model is used for the description of the footing-soil system. Its objective is to reproduce the geometric (uplift of the footing) and material non-linearities (soil plasticity) that arise at the foundation level during a seismic excitation. The utility of macroelement modeling resides in the fact that it allows for the execution of a large number of non-linear dynamic analyses of the pier under the horizontal and vertical components of real acceleration time histories as well as under the combination of both. The results concentrate on two main points: the influence of the vertical component of the seismic input motion on the maximum and residual displacements of the foundation and on a discussion of possible correlations between the induced displacements at the foundation level and certain parameters describing the severity of the seismic input motion.
机译:本文的范围旨在证明浅层基础宏单元建模在基于性能的设计中的实用性。我们专注于在相对较软的粘性土壤上的刚性圆形基础上建立的桥墩的沉降,水平位移和旋转。新开发的宏观元素模型用于描述基础土壤系统。其目的是再现在地震激发过程中在基础层上出现的几何形状(立足的隆起)和材料非线性(土壤可塑性)。宏观元素建模的实用性在于它允许在实际加速时间历史的水平和垂直分量下以及在两者的组合下执行墩的大量非线性动力学分析。结果集中在两个主要点上:地震输入运动的垂直分量对基础的最大位移和残余位移的影响,以及在基础水平上的诱导位移与描述地震烈度的某些参数之间可能的相关性的讨论。地震输入运动。

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