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Numerical investigation on evolving failure of caisson foundation in sand using the combined Lagrangian-SPH method

机译:使用Lagrangian-SPH方法使用沉蝶基础在沙子中不断变化的数值研究

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Caisson foundations are often used in offshore engineering. However, for an optimum design understanding the failure process of a caisson during its installation and the subsequent external loadings is crucial. This paper focuses on the evolving failure of a caisson foundation in sand by advanced numerical modeling. A combined Lagrangian-smoothed particle hydrodynamics method is adopted to deal with the large deformation analysis. The method with parameters are first calibrated and validated by a simulation of cone penetration test in sand. The results of an experimental campaign of a caisson in the same sand are selected and validated for the numerical model. Then, more representative loading combinations are designated for numerical modeling of failure process and mode. Furthermore, three additional caisson dimensions D/d?=?0.5, 1.5, and 2.0 (changing the ratio of caisson diameter D to skirt length d while keeping the same soil-structure surface contact area) are simulated under six representative combined loading paths. Based on that, the influence of caisson dimension to the failure process and mode is investigated. All results are helpful to estimate all possible sliding surfaces under different monotonic combined loading paths for further limit analysis.
机译:沉箱基础通常用于海上工程。然而,对于最佳设计,了解安装过程中沉箱的故障过程,随后的外部负载是至关重要的。本文侧重于先进的数值模型在沙滩上的不断变化的失败。采用组合的拉格朗日平滑粒子流体动力学方法来处理大变形分析。首先通过在沙子中模拟锥形穿透试验进行校准和验证参数的方法。选择并验证了同一砂中的沉箱实验活动的结果,以获得数值模型。然后,为故障过程和模式的数值建模指定了更多代表性加载组合。此外,在六种代表性组合的加载路径下模拟了三个附加沉箱尺寸D / D?= 0.5,1.5和2.0(改变了保持相同的土壤结构表面接触面积的裙子直径d的比例。基于此,研究了沉箱维度对故障过程和模式的影响。所有结果都有助于估计不同单调组合负载量的所有可能的滑动表面,以进一步限制分析。

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