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Discrete element modelling and cavity expansion analysis of cone penetration testing

机译:锥入度测试的离散元建模和空腔扩展分析

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摘要

This paper uses the discrete element method (DEM) in three dimensions to simulate cone penetration testing (CPT) of granular materials in a calibration chamber. Several researchers have used different numerical techniques such as strain path methods and finite element methods to study CPT problems. The DEM is a useful alternative tool for studying cone penetration problems because of its ability to provide micro mechanical insight into the behaviour of granular materials and cone penetration resistance. A 30° chamber segment and a particle refinement method were used for the simulations. Giving constant mass to each particle in the sample was found to reduce computational time significantly, without significantly affecting tip resistance. The effects of initial sample conditions and particle friction coefficient on tip resistance are investigated and found to have an important effect on the tip resistance. Biaxial test simulations using DEM are conducted to obtain the basic granular material properties for obtaining CPT analytical solutions based on continuum mechanics. Macro properties of the samples for different input micro parameters are presented and used to obtain the analytical CPT results. Comparison between the numerical simulations and analytical solutions show good agreement.
机译:本文在三个维度上使用离散元素方法(DEM)来模拟校准室内的颗粒材料的锥孔渗透测试(CPT)。一些研究人员已经使用了不同的数值技术,例如应变路径法和有限元法来研究CPT问题。 DEM是研究圆锥体穿透问题的有用替代工具,因为它具有提供微机械洞察颗粒材料行为和圆锥体穿透阻力的能力。模拟使用了30°室段和粒子细化方法。发现给样品中的每个颗粒恒定的质量会大大减少计算时间,而不会显着影响吸头阻力。研究了初始样品条件和颗粒摩擦系数对吸头电阻的影响,发现它们对吸头电阻具有重要影响。进行了使用DEM的双轴测试模拟,以获取基本的颗粒材料特性,从而获得基于连续力学的CPT分析溶液。给出了针对不同输入微观参数的样品的宏观性质,并用于获得分析性CPT结果。数值模拟与解析解之间的比较显示出良好的一致性。

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