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A coupled method to study blast wave propagation in fractured rock masses and estimate unknown properties

机译:研究爆炸波在裂隙岩体中传播并估算未知性质的耦合方法

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The prediction of blast-induced ground vibrations across fractured rock masses is of great concern to rock engineers in evaluating the stability of rock slopes in open pit mines. Hence, many researchers have studied the wave propagation through rock slopes and tried to simulate its complexities using different methods. At the present work, the 'linear superposition method' was used at the Gol-e-Gohar iron ore mine to simulate the production blast seismograms based upon measurements of single-hole shot vibrations, carried out at a distance of 39 m from the blast. The production blast seismograms were then used as the input to predict particle velocity time histories in the mine wall using the three-dimensional discrete element method. By back analysis of measured blast waveforms at a distance of approximately 300 m away, mechanical properties of in-filled faults of the study area were determined. In combination with the numerical model, a 'simulated annealing' search algorithm was employed to find the optimum values of unknown parameters. The final results of time histories of particle velocity show a good agreement with the measured time histories.
机译:岩石工程师在评估露天矿中岩石边坡的稳定性时,爆破引起的地震动在裂隙岩体中的预测非常重要。因此,许多研究人员研究了波在岩石斜坡上的传播,并尝试使用不同的方法模拟其复杂性。在目前的工作中,Gol-e-Gohar铁矿石矿使用了“线性叠加法”来模拟高炉爆破地震图,该爆破地震图基于距爆破点39 m处的单孔爆破振动的测量结果。然后使用产生的爆炸地震图作为输入,使用三维离散元方法预测矿井壁中的粒子速度时间历史。通过对大约300 m处的爆炸波形进行反分析,确定了研究区充填断层的力学性能。结合数值模型,采用“模拟退火”搜索算法来找到未知参数的最佳值。粒子速度时间历史记录的最终结果与测得的时间历史记录吻合良好。

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