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Numerical Simulation on the Effect of Stemming to Burden Ratio on Rock Fragmentation by Blasting

机译:爆破岩石碎片对岩碎裂效果的数值模拟

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Blasting techniques are widely used in mining and quarry to fragment rock mass into smaller pieces.Fragment size distribution of rock after blasting is an important index to estimate the productivity of blasting activity.The main purpose of this study is to investigate numerically the effect of stemming length to burden ratio on rock fragmentation induced by blasting.Numerical investigation was carried out by utilizing the Discrete Element Method(DEM)and Particle Blast Method(PBM)approaches in LS-DYNA software,on the response of rock fragmentation.In bench blasting simulation,the rock media was modelled using DEM and the blast loading was modelled using PBM.The mean particle size(d_(50))and 80% passing size(d_(80))were determined using computer software.Relationship between stemming to burden ratio and mean particle size has been established.It was observed that the mean particle increases with the increases in stemming to burden ratio.The numerical model has successfully shown the crack propagation of rock which can form the rock fragments and helps to predict the fragment size distribution of rock.
机译:爆破技术被广泛用于采矿和采石场,以碎片岩体成较小的碎片。爆破后岩石的分布尺寸分布是估计爆破活动的生产率的重要指标。本研究的主要目的是在数值上进行抗病的影响长度上通过blasting.Numerical调查诱导破岩负担比通过利用离散元法(DEM)和粒子爆破方法(PBM)进行接近在LS-DYNA软件,对岩石fragmentation.In台阶爆破仿真的响应,使用DEM进行建模岩体培养基,使用PBM进行建模的爆炸载荷。使用计算机软件确定平均粒度(D_(50))和80%的通过(D_(80))。止算与负担比率之间的关系已经建立了平均粒子尺寸。观察到平均粒子随着止回负荷比率的增加而增加。数值模型成功地显示了CRA CK岩石的传播,可以形成岩石碎片并有助于预测岩石的片段大小分布。

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