开发了确定岩体块体几何形状的MatLab程序及其在采矿和岩石力学工程中的应用

Reza Yarahmadi, R. Bagherpour, A. Khademian, H. Mirzaie, R. Kakaie
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引用次数: 3

摘要

各种地质作用,如构造活动,在岩体中形成裂缝和不连续面;这些,反过来,在岩体中形成不同形状和大小的块体。在采石场产量确定、破碎能优化、爆破方式设计、边坡和地下空间块体稳定性以及崩落法开采贫化潜力预测等岩石和矿山工程的不同领域,准确理解这些块体的几何形状至关重要。由于昂贵的操作和三维测量裂缝和不连续结构特性的不确定性,建议使用二维简单模型。到目前为止,所有的研究都集中在分析和数学上寻找原生块的问题上,但这些问题的应用被稍微忽视了。介绍了二维空间岩体块体几何形状确定的MATLAB程序,并对其应用进行了研究。
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Developing a MatLab code for determine geometry of rock mass blocks and its applications in mining and rock mechanic engineering
Various geological processes such as tectonic activities develop fractures and discontinuities in the rock mass body; these, in turn, form blocks with different shapes and sizes in the rock mass body. Accurate understanding of these blocks' geometry is essential in different domains of rock and mine engineering such as determination of yield in quarries, optimization of fragmentation energy, the design of blasting pattern, block stability in slopes and underground spaces and the prediction of dilution potential in caving methods exploitation. Because of costly operation and uncertainties in the measurement of fractures and discontinuities properties in 3D, 2D simple models are recommended. So far, all investigations have been focused on the problem of finding primary blocks analytically and mathematically, but these problem applications have been neglected slightly. This paper introduces a MATLAB code for geometry determination of rock mass blocks in two dimensional spaces and investigates the applications of it.
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