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Finite Element Modeling and Simulations to Investigate the Relationship between the Cone Index Profile and Draft Requirements of a Compaction Profile Sensor with Depth

机译:有限元建模与模拟,以研究锥形索引配置文件与深度压实曲线传感器的关系

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摘要

Previous research conducted using a compaction profile sensor and a standard cone penetrometer over a wide range of soil types and conditions found that the unit pressure acting on the cutting edge, defined as the cone index equivalent (CIE), at a specific depth (d) was related to the cone index (CI) value at that depth, the depth of the cutting edge (d), and the interaction between CI and the depth of the cutting edge (i.e., CI x d) with a very high coefficient of multiple determination irrespectiveof the soil type and conditions. The objective of this study was to provide an analytical basis for the relationship between CIE and CI. A two-dimensional axisymmetric model for soil-cone interaction and a three-dimensional model for soil-tine interaction were developed using a finite element method (FEM). A non-linear elasto-plastic constitutive behavior along with the Drucker-Prager yield criterion were used to represent the soil cutting process. Simulations studies were conducted in 25 distinct soiltypes and conditions, and the results indicated a similar relationship between CIE and CI, as observed in the previous research. These results support the existence of a strong theoretical basis for the empirical relationship observed in the previous research.
机译:以前使用压实轮廓传感器和各种土壤类型和条件的标准锥形孔隙度进行的研究发现,在特定深度(D)处定义为切削刃的单元压力,定义为锥形指数等效物(CIE)与该深度的锥形指数(CI)值相关,切削刃(d)的深度,以及Ci与切削刃的深度(即,CI XD)之间的相互作用,具有非常高的多重测定系数无论土壤类型和条件如何。本研究的目的是为CIE和CI之间的关系提供分析基础。利用有限元法(FEM)开发了一种用于土壤 - 锥形相互作用的二维轴对称模型及土壤 - 尖相互作用的三维模型。使用非线性弹性塑料组成型行为以及Drucker-Prager屈服标准来表示土壤切削过程。模拟研究是在25种不同的土壤型和条件下进行的,结果表明了CIE和CI之间的相似关系,如前面的研究所观察到。这些结果支持在先前研究中观察到的经验关系的强烈理论基础。

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