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Multi-scale analysis of cone penetration test (CPT) in a virtual calibration chamber

机译:虚拟校准室中的锥孔渗透测试(CPT)的多尺度分析

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摘要

A virtual calibration chamber was developed using a three-dimensional (3D) discrete element method (DEM) to perform cone penetration tests (CPTs) on a discrete analogue of Ticino sand. The macroscale response of the DEM model was previously shown to be in good quantitative agreement with that of analogous physical models. In the current study the performance of the model at meso and microscale levels of resolution is examined. The microscale response is examined using particle displacements and contact force distributions. The mesoscale behaviour is examined using stress and strain fields obtained through appropriate averaging and interpolating procedures. Four CPTs are examined at the steady-state penetration stage. The effects of radial boundary conditions, initial stress state, initial average density, and particle rotational inertia are examined. The ability of the micro and mesoscale data to identify and explain the relevant mechanisms underlying the significant differences in the macroscale response of the models is discussed. Comparisons with similar phenomena observed in physical tests are also highlighted.
机译:使用三维(3D)离散元素方法(DEM)开发了虚拟校准室,以对Ticino砂的离散模拟物执行锥孔渗透测试(CPT)。先前已证明DEM模型的宏观响应与类似的物理模型具有良好的定量一致性。在当前的研究中,研究了模型在细观和微观尺度上的性能。使用颗粒位移和接触力分布检查微观响应。使用通过适当的平均和内插程序获得的应力和应变场来检查中尺度行为。在稳态渗透阶段检查了四个CPT。研究了径向边界条件,初始应力状态,初始平均密度和粒子旋转惯性的影响。讨论了微观和中尺度数据识别和解释模型宏观响应中显着差异背后的相关机制的能力。还强调了与在物理测试中观察到的类似现象的比较。

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