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Discrete Element Modeling (DEM) of Cone Penetration Testing on Soil With Varying Relative Soil Density

机译:不同相对土壤密度土壤锥体渗透试验的离散元模拟(DEm)

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摘要

Modeling soil-tool interaction is essential for equipment design and performance evaluation on soil behavior responses under loading. Computational tools based on particle-based mechanics such as Discrete Element Modeling (DEM) and Smoothed Particle Hydrodynamics (SPH) have potential in modeling large strain soil dynamic behaviors from soil-tool interaction. The objective of this study is to validate the accuracy and robustness of DEM calibration methodology as it relates to soil deformation during cone penetration on varying initial soil relative density. The influence of factors such as DEM material properties and cone to particle size ratio on DEM cone penetration simulation will be investigated. The paper presents a comparison of DEM predicted cone penetration resistance and laboratory measured penetration data on Norfolk sandy loam. Soil mechanical behavior was modeled with Hertz-Mindlin (HM) contact stiffness model and a new coupled frictional law for static and rolling resistance coefficients. The DEM material properties were calibrated using residual strength from direct shear test. DEM simulations were performed using LIGGGHTS, open source DEM code. Cone penetrometer experiments using anÂASABE standard cone with 12.53 mm cone base diameter and 30-degree cone tip were used to validate the calibrated DEM model. DEM prediction of cone penetration resistance trend and steady state values were in close agreement with the laboratory measured data for relative density range from 5 to 30%. At higher dense states (relative density of 90%), DEM calibration requires further improvement.
机译:造型土壤工具互动对于装载下土壤行为应对的设备设计和性能评估至关重要。基于基于粒子的力学的计算工具如离散元素建模(DEM)和平滑的粒子流体动力学(SPH)具有从土壤工具相互作用建模大应变土动态行为的潜力。本研究的目的是验证DEM校准方法的准确性和鲁棒性,因为它锥体穿透期间涉及土的变形上变化的初始土壤相对密度。将研究诸如DEM材料特性和锥体呈粒度比在DEM锥形渗透模拟中的因素的影响。本文介绍了DEM预测锥形穿透抗性和实验室测量的普通砂岩泥土渗透数据的比较。土壤力学行为用赫兹 - 思维(HM)接触刚度模型和用于静电和滚动阻力系数的新耦合摩擦法。使用直接剪切测试的残余强度校准DEM材料性质。使用LigGGHTS,开源DEM代码进行DEM仿真。锥形渗透表实验使用αAsabe标准锥体,具有12.53mm锥形直径和30度锥尖端用于验证校准的DEM模型。 DEM预测锥形渗透趋势和稳态值与实验室测量数据相对达到5至30%。在较高的致密状态(相对密度为90%),DEM校准需要进一步改进。

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