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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Nonlinear Seismic Soil-pile-structure Interactions: Shaking Table Tests And Fem Analyses
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Nonlinear Seismic Soil-pile-structure Interactions: Shaking Table Tests And Fem Analyses

机译:非线性地震土-桩-结构相互作用:振动台试验和Fem分析

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摘要

In this paper, a soil-pile-structure model is tested on a shaking table subject to both a sinusoidal wave and the acceleration time history of the scaled 1940 El Centra earthquake. A medium-size river sand is compacted into a 1.7-m-high laminar rectangular tank to form a loose fill with a relative density of 15%. A single-storey steel structure of 2.54 ton is placed on a concrete pile cap, which is connected to the four end-bearing piles. A very distinct pounding phenomenon between soil and pile is observed; and, the acceleration response of the pile cap can be three times larger than that of the structural response. The pounding is due to the development of a gap separation between soil and pile, and the extraordinary large inertia force suffered at the top of the pile also induces cracking in the pile. To explain this observed phenomenon, nonlinear finite element method (FEM) analyses with a nonlinear gap element have been carried out. The spikes in the acceleration response of the pile cap caused by pounding can be modeled adequately by the FEM analyses. The present results suggest that one of the probable causes of pile damages is due to seismic pounding between the laterally compressed soil and the pile near the pile cap level.
机译:在本文中,在振动台上测试了土桩结构模型,该模型同时受到正弦波和1940年El Centra地震的加速时间历程的影响。将中等大小的河砂压实到1.7米高的层状矩形水箱中,形成相对密度为15%的疏松填充物。将2.54吨的单层钢结构放置在混凝土桩帽上,该桩帽连接到四个端承桩。在土壤和桩之间观察到非常明显的撞击现象。桩帽的加速度响应可以是结构响应的三倍。撞击是由于土壤和桩之间的间隙分离的发展而造成的,并且桩顶部承受的巨大惯性力也会在桩中引起裂缝。为了解释这种现象,已经进行了带有非线性间隙元素的非线性有限元方法(FEM)分析。可以通过FEM分析来适当地模拟由冲击引起的桩帽加速度响应中的峰值。目前的结果表明,桩损坏的可能原因之一是由于侧向压缩土壤和桩帽水平附近桩之间的地震撞击。

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