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首页> 外文期刊>International journal of geomechanics >Particle-Based Numerical Manifold Method to Model Dynamic Fracture Process in Rock Blasting
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Particle-Based Numerical Manifold Method to Model Dynamic Fracture Process in Rock Blasting

机译:基于粒子的数值流形方法对岩爆动态破裂过程进行建模

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摘要

A particle-based numerical manifold method (PNMM) is developed to investigate rock fracturing behavior under dynamic loading. The basic idea of PNMM is to represent the microstructure of rock with a group of particles and to simulate the macroscopic behavior of rock masses through polygonal elements, which is performed by a dual-level discretization system. The first discretization is in the manner of FEM, which reduces the infinite degrees of freedom (DOF) of a continuum to the finite DOF of polygonal elements. However, the DOF of the model are not further affected by the latter discretization. The behaviors of internal particles are obtained from the mechanical fields of their governing elements. A dual-layer-cover system, i.e., the mathematical cover and the physical cover, is adopted in PNMM. Fracture initiation and propagation at a macroscopic level are represented as the coalescence of microcracks induced at the microscale level between particles. The Johnson-Holmquist-Beissel (JHB) model is incorporated into PNMM to simulate a borehole blasting under dynamic loading conditions. Numerical simulations show a good agreement with experimental and numerical results in the literature. (C) 2016 American Society of Civil Engineers.
机译:提出了一种基于粒子的数值流形方法(PNMM)来研究岩石在动态载荷下的压裂行为。 PNMM的基本思想是用一组颗粒来表示岩石的微观结构,并通过多边形元素模拟岩体的宏观行为,这是由双层离散化系统执行的。第一种离散化是采用FEM的方式,它将连续体的无限自由度(DOF)减少为多边形元素的有限DOF。但是,模型的自由度不受后者离散化的进一步影响。内部粒子的行为是从其控制元素的机械场获得的。 PNMM采用双层封面系统,即数学封面和物理封面。在宏观水平上的断裂萌生和扩展表示为在微粒之间的微观水平上引起的微裂纹的合并。将Johnson-Holmquist-Beissel(JHB)模型并入PNMM中,以模拟动态载荷条件下的钻孔爆破。数值模拟与文献中的实验和数值结果显示出良好的一致性。 (C)2016年美国土木工程师学会。

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