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Effect of the combined action of lateral load and axial load on the pile instability in liquefiable soils

机译:横向荷载和轴向荷载共同作用对液化土桩不稳定性的影响

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摘要

Even with modern design guidelines, collapse of pile-supported structures in liquefiable deposits are still observed after strong earthquakes, and buckling instability of piles has been cited as a possible mechanism of failure in liquefiable soils. However, the buckling failure of pile under the combined action of lateral load and axial load has received little attention. This paper presents a shake-table test to study the failure mechanism of an end-bearing pile partly embedded in a saturated sand layer. It is found that pile with a large mass at the top failed in buckling after the soil fully liquefied. In addition, a pseudo-static analysis method is proposed to evaluate the buckling instability of the pile under the combination of lateral and axial load. The buckling load of the pile was found to decrease with the increase in lateral inertial load. It is hence important for the designers to consider the level of lateral loading during buckling analysis of pile in liquefiable ground. Finally, a possible boundary for safe design is proposed to avoid buckling failure of the pile while considering the effect of inertial load.
机译:即使采用现代设计准则,在强烈地震后仍观察到液化沉积物中桩支撑结构的坍塌,并且桩的屈曲不稳定性被认为是液化土壤中破坏的一种可能机理。然而,在侧向载荷和轴向载荷共同作用下,桩的屈曲破坏引起的关注很少。本文提出了一个振动台试验,以研究部分嵌入饱和砂层中的端承桩的破坏机理。发现在土壤完全液化后,顶部的大质量桩无法屈曲。此外,提出了一种拟静力分析方法来评估在水平和轴向荷载作用下桩的屈曲不稳定性。发现桩的屈曲载荷随着横向惯性载荷的增加而减小。因此,对于设计师而言,在可液化土桩的屈曲分析过程中考虑侧向荷载水平很重要。最后,提出了安全设计的可能边界,以避免在考虑惯性载荷影响的情况下避免桩的屈曲破坏。

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