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Influence of axial load on lateral pile response in liquefiable soils. Part Ⅱ: numerical modelling

机译:轴向载荷对液化土壤中侧向桩响应的影响。第二部分:数值建模

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Dynamic centrifuge modelling has been used to observe amplification of lateral displacements and unstable collapse in pile groups under the action of significant axial load and in liquefiable soils with low stiffness. The popular pseudostatic non-linear p-y analysis method has here been developed to account for such instability effects using the Riks post-buckling analysis method, here implemented in ABAQUS. The numerical method was validated against centrifuge model tests presented in the companion paper and pre-collapse amplification effects and collapse loads were found to be well predicted. The model was extended to examine the response of 2 × 2 pile groups formed from 0.5 m diameter piles with bending properties typical of steel and reinforced concrete and with initial deflections indicative of those that may occur during lateral spreading as a result of strong shaking. These analyses demonstrated the vulnerability of the flexible concrete piles to significant amplification and unstable collapse even at moderate loads, while for the stiffer and stronger steel piles, amplifications are only 10-20% even at maximum typical working loads, and therefore practically negligible in the design of piles in liquefiable soils.
机译:动态离心机建模已被用来观察在明显的轴向载荷作用下和低刚度的可液化土壤中桩组的横向位移和不稳定坍塌的放大。在这里,开发了流行的伪静态非线性p-y分析方法,以使用在ABAQUS中实现的Riks后屈曲分析方法解决这种不稳定性影响。该数值方法已针对随附论文中的离心模型测试进行了验证,并且发现塌陷前的放大效应和塌陷载荷可以得到很好的预测。扩展了该模型,以检查由直径为0.5 m的桩形成的2×2桩组的响应,这些桩具有钢和钢筋混凝土的典型弯曲特性,并且初始挠度表示强烈晃动可能在横向扩展过程中发生的挠度。这些分析表明,即使在中等载荷下,柔性混凝土桩也容易受到明显的放大和不稳​​定塌陷的影响,而对于刚性更高的钢桩,即使在最大典型工作载荷下,放大率也仅为10%至20%,因此在实际使用中可以忽略不计。液化土壤中桩的设计。

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