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Fragmentation modeling using the Multiple Blasthole Fragmentation (MBF) model at an openpit mine

机译:在露天矿使用多重爆破碎片(MBF)模型进行碎片建模

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摘要

The Multiple Blasthole Fragmentation (MBF) model models multiple explosive charge contributions and the effect on fragmentation of delay timing with its associated scatter for each blasthole. The model uses near-field blast vibration attenuation parameters and the ground p-wave velocity as inputs for part of the in situ rock property to model rock fragmentation. It models most blast design parameters explicitly and simulates the effect of wave reinforcement due to the interaction of simultaneously arriving waves or diminishing cooperative contribution from long delay intervals between charges within a blasthole or among blastholes. The fragmentation size is calculated at three-dimensional grid points within a blast, and the fines and oversized blocks are treated explicitly. The model takes a surveyed irregular geometry of the free face of a blast as the calculation boundary. This paper presents a case study on applying the MBF model at an openpit mine. Near-field vibration measurements from signature hole blasts were conducted to obtain the stress-wave magnitude and attenuation parameters as well as ground sonic velocity. A production blast was then monitored with the corresponding fragmentation measured, serving as site-specific inputs to the MBF model. Various blast design scenarios were then simulated to develop ones that provide better fragmentation to improve mill throughput for the mine.
机译:多个爆破孔碎片化(MBF)模型对多个炸药装药贡献进行建模,并对每个炮孔的延迟时间碎片化及其相关的散射进行建模。该模型使用近场爆炸振动衰减参数和地面p波速度作为部分原位岩石特性的输入,以对岩石破碎进行建模。它同时对大多数爆破设计参数进行建模,并模拟由于同时到达的波的相互作用或爆破孔内或爆破孔之间的装药时间间隔长而产生的协同作用所致的波加固效果。在爆炸中的三维网格点上计算碎片大小,并明确处理细粉和超大块。该模型将爆炸的自由面的测量的不规则几何形状作为计算边界。本文介绍了在露天矿中应用MBF模型的案例研究。进行了来自特征性孔爆破的近场振动测量,以获得应力波幅度和衰减参数以及地面声速。然后监测生产爆炸,并测量相应的碎片,作为MBF模型的特定位置输入。然后,对各种爆炸设计方案进行了仿真,以开发可提供更好破碎效果的方案,以提高矿山的工厂产量。

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