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首页> 外文期刊>Rock Mechanics and Rock Engineering >Volumetric Fracture Intensity Measurement for Improved Rock Mass Characterisation and Fragmentation Assessment in Block Caving Operations
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Volumetric Fracture Intensity Measurement for Improved Rock Mass Characterisation and Fragmentation Assessment in Block Caving Operations

机译:体积崩裂强度测量,用于改进崩落开采过程中的岩体特征和破碎性评估

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摘要

Recent discrete fracture network (DFN) related analysis of a number of block caving projects has demonstrated the role that the 3D volumetric fracture intensity measure (P32) plays on controlling a number of rock mass properties critical to caving operations. P32 represents the fracture area per unit volume and as such represents a non-directional intrinsic measure of the degree of rock mass fracturing, incorporating both a frequency measure and a fracture size component. Preliminary results suggest that the P32 intensity of a DFN model would strongly control the overall fragmentation of the rock mass. The implication would be that by taking the overall distribution of P32, the in situ fragmentation of a large rock mass volume could be determined in a computationally efficient way. With P32 also being shown to be one of the dominant controls on DFN derived directional stiffness measures, increasingly these DFN related work flows are being shown to be central to an improved rock mass characterisation process and ultimately the more accurate capturing of the caving process.
机译:最近对许多崩落工程进行的离散裂缝网络(DFN)相关分析表明,3D体积裂缝强度测量(P32)在控制许多对崩落操作至关重要的岩体特性方面发挥了作用。 P32表示每单位体积的裂缝面积,因此代表了岩体压裂程度的非方向性内在度量,同时包含了频率度量和裂缝尺寸分量。初步结果表明,DFN模型的P32强度将强烈控制岩体的整体破碎。暗示是通过获取P32的整体分布,可以以计算有效的方式确定大块岩体的原位碎裂。随着P32也被证明是DFN导出的方向刚度测量的主要控制之一,越来越多的DFN相关工作流被显示为改进岩体表征过程和最终更精确地捕捉崩落过程的核心。

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