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Numerical Modeling of a Punch Penetration Test Using the Discrete Element Method

机译:采用离散元法的打孔渗透试验数值模拟

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Understanding the brittleness of rock has a crucial importance in rock engineering applications such as the mechanical excavation of rock. In this study, numerical modeling of a punch penetration test is performed using the Discrete Element Method (DEM). The Peak Strength Index (PSI) as a function of the brittleness index was calculated using the axial load and a penetration graph obtained from numerical models. In the first step, the numerical model was verified by experimental results. The results obtained from the numerical modeling showed a good agreement with those obtained from the experimental tests. The propagation path was also simulated using Voronoi meshing. The fracture was created under the indenter in the first step, and then radial fractures were propagated. The effects of confining pressure and strength parameters on the PSI were subsequently investigated. The numerical results showed that the PSI increases with enhancing the confining pressure and the strength parameter of the rock, including cohesion and the friction angle. A new relationship between the strength parameters and PSI was also introduced based on two variable regressions of the numerical results.
机译:了解岩石的脆性在岩石工程应用中具有至关重要的岩石,例如岩石的机械挖掘。在该研究中,使用离散元素方法(DEM)进行打孔测试的数值建模。使用从数值模型获得的轴向载荷和穿透图来计算作为脆性指数的函数的峰强度指数(PSI)。在第一步中,通过实验结果验证了数值模型。从数值建模获得的结果显示出与从实验测试中获得的结果吻合良好。还使用Voronoi网格模拟传播路径。在第一步中的压痕下产生骨折,然后繁殖径向裂缝。随后研究了限制压力和强度参数对PSI的影响。数值结果表明,PSI随着增强岩石的狭窄压力和强度参数而增加,包括内聚力和摩擦角。还基于数值结果的两个可变回归来介绍强度参数和PSI之间的新关系。

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