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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Numerical analysis of the seismic inertial and kinematic effects on pile bending moment in liquefiable soils
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Numerical analysis of the seismic inertial and kinematic effects on pile bending moment in liquefiable soils

机译:液化土桩弯矩抗震惯性和运动效应的数值分析

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In an effort to study the seismic pile moment induced by the combined structure-pile inertial and soil-pile kinematic effects for single piles and pile groups in liquefiable ground, an extensive series of 3D finite element simulations are conducted in this paper. The roles that lateral inertial and kinematic interactions play on the pile moment are found to differ in different soil-pile-structure systems. Inertial structure force and kinematic soil displacement of the same direction could cause pile head moments of the same or opposite directions depending on the rotational constraint at the pile head. Kinematic interaction has a dominating influence on the pile moment for pile foundations with pile head rotation constrained by the existence of a pile cap, while inertial interaction is strongly influential for free-head piles. The coupling of inertial and kinematic interactions depends on the soil-pile-structure system configuration and the magnitudes of the inertial structure force and the kinematic soil displacement. Many current pseudo-static methods for calculating the seismic pile moment through summing a percentage of the kinematic induced moment with another percentage of the inertial induced moment could produce very inaccurate results under certain conditions.
机译:努力研究由合并结构桩惯性和土桩运动效应的地震桩矩对单桩和液体切割群体中的液体切割地面,在本文中进行了一系列广泛的3D有限元模拟。发现横向惯性和运动相互作用在不同的土桩结构系统中发现横向惯性和运动相互作用的作用。相同方向的惯性结构力和运动型土壤位移可能导致相同或相反方向的绒头矩,这取决于桩头处的旋转约束。运动互动对桩头旋转的桩矩结构有一个主导的影响,桩头旋转受到桩帽的存在,而惯性相互作用对自由头桩具有强烈影响力。惯性和运动相互作用的耦合取决于土桩结构系统配置和惯性结构力的幅度和运动型土壤置换。许多用于计算地震桩时刻通过总结运动诱导的瞬间的百分比的伪静态方法,在某些条件下可以产生非常不准确的结果。

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