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首页> 外文期刊>International journal of geomechanics >Interpretation of Cone Factor in Undrained Soils via Full-Penetration Finite-Element Analysis
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Interpretation of Cone Factor in Undrained Soils via Full-Penetration Finite-Element Analysis

机译:全渗入有限元分析解释不排水土壤中的锥度因子

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摘要

The cone penetration test is widely used to interpret the undrained shear strength of soil. The interpretation methods are commonly based on bearing capacity, cavity expansion, or strain-path methods. In this paper, the cone penetration test is analyzed using the large deformation FEM and contact mechanics. The full penetration process from the ground surface is modeled. The three-parameter Tresca model is used to represent the undrained soil behavior in a total stress analysis, to derive a cone factor equation for interpretation of the undrained shear strength. This equation is then compared with existing solutions in the literature as well as experimental data. The complexities that arise in more sophisticated soil models are elaborated in an effective stress analysis using the Modified Cam Clay model.
机译:圆锥渗透试验被广泛用于解释土壤的不排水剪切强度。解释方法通常基于承载能力,空腔扩张或应变路径方法。在本文中,使用大变形有限元法和接触力学分析了锥入度测试。对从地面的完全渗透过程进行了建模。三参数Tresca模型用于在总应力分析中表示不排水的土体行为,以导出用于解释不排水抗剪强度的圆锥系数方程。然后将该方程与文献中的现有解决方案以及实验数据进行比较。使用改良的Cam Clay模型在有效的应力分析中详细阐述了更复杂的土壤模型中出现的复杂性。

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