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Advanced numerical modelling of caisson foundations in sand to investigate the failure envelope in the H-M-V space

机译:沉沙基础的高级数值模型,用于研究H-M-V空间中的破坏包络线

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This paper focuses on the identification of the failure envelope of a caisson foundation in sand using an advanced critical state-based sand model (SIMSAND) and the Combined Lagrangian Smoothed Particle Hydrodynamics Method (CLSPH). The parameters of the SIMSAND constitutive model are first calibrated using triaxial tests on Baskarp sand. In order to validate the combined CLSPH-SIMSAND approach, a cone penetration test, model tests and a field test on a reduced scale caisson foundation are simulated. After full numerical validations with different scales from laboratory to in-situ conditions, a numerical parametrical study is then introduced considering different sand properties (density, friction angle, deformability, crushability) and caisson dimensions (soil-structure contact surface area, diameter-depth ratio) and complex combined loading paths to identify the failure envelope in the horizontal force (H), bending moment (M), vertical force (V) space. The influence of the caisson foundation contact surface area, aspect ratio and soil parameters are considered and quantified. Finally, an analytical formula is proposed for the 3D failure envelope in the H-M-V space.
机译:本文着重于使用高级基于临界状态的砂土模型(SIMSAND)和组合拉格朗日平滑粒子流体动力学方法(CLSPH)来确定沉箱基础在沙子中的破坏包络。首先在Baskarp砂岩上使用三轴试验对SIMSAND本构模型的参数进行校准。为了验证组合的CLSPH-SIMSAND方法,在缩小的沉箱基础上模拟了圆锥体渗透试验,模型试验和现场试验。经过从实验室到现场条件的不同规模的完整数值验证后,然后进行数值参数研究,其中考虑了不同的砂性(密度,摩擦角,变形性,可压碎性)和沉箱尺寸(土壤-结构接触表面积,直径-深度)比率和复杂的组合载荷路径,以识别水平力(H),弯矩(M),垂直力(V)空间中的破坏包络线。考虑并量化了沉箱基础接触表面积,长宽比和土壤参数的影响。最后,针对H-M-V空间中的3D失效包络提出了解析公式。

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