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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Application of a mesh-free continuum method for simulation of rock caving processes
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Application of a mesh-free continuum method for simulation of rock caving processes

机译:无网格连续体方法在岩石崩落过程模拟中的应用

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摘要

Understanding the caving process and material flow is fundamental to block and sublevel cave mining, and also to longwall mining in sedimentary deposits. In this paper, the application of a mesh-free method, called Smoothed Particle Hydrodynamics (SPH), is demonstrated for simulating rock caving in a stratified deposit. The advantages for simulating caving processes using a mesh-free numerical framework are highlighted. Two different examples are chosen, one with elastic-brittle material behaviour with large yield strength (failure by brittle fracture) and the other with elasto-plastic material behaviour with relatively lower yield strength to allow ductile deformation of the rock mass. The modelling results capture the mechanistic aspects observed in caving processes. It is shown that the large-scale deformation and the associated fracture processes in caving can be effectively simulated using SPH. In the authors' knowledge, this work is the first attempt in demonstrating the application of a mesh-free method for simulating caving processes.
机译:理解崩落过程和物质流是块状和地下溶洞开采以及沉积物长壁开采的基础。在本文中,演示了无网格方法(称为平滑粒子流体动力学(SPH))的应用,用于模拟分层沉积物中的岩崩。强调了使用无网格数值框架模拟崩落过程的优势。选择两个不同的示例,一个具有弹性-脆性材料的行为,具有较大的屈服强度(脆性断裂破坏),另一个具有弹性-塑性材料的行为,具有相对较低的屈服强度,以允许岩体的延性变形。建模结果记录了在崩落过程中观察到的机械方面。结果表明,使用SPH可以有效地模拟崩落过程中的大规模变形和相关的破裂过程。在作者的知识范围内,这项工作是演示无网格方法在模拟冒顶过程中的应用的首次尝试。

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