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Assessment of crack initiation and propagation in rock from explosion-induced stress waves and gas expansion by cross-hole seismometry and FEM-DEM method

机译:跨孔地震法和FEM-DEM方法评估爆炸应力波和气体膨胀引起的岩石裂纹萌生和扩展

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Single-hole blast-induced damage in a granitic outcrop has been assessed through both controlled experiments and numerical simulations with a combined finite-discrete element method (FEM-DEM). Damage tomographies from decoupled short and long explosive charges in flooded boreholes were obtained through a high-resolution cross-hole system, by measuring pre- and post-blast seismic velocities around the blastholes. Damage was assessed through crack density, which was calculated by inversion of P-wave velocity measurements through an Effective Medium Theory (EMT) method. The resulting damage was found to be highly asymmetrical around each blast hole, both along the vertical and horizontal planes, despite the apparent isotropy and homogeneity of the granitic rock mass. Experimental results combined with numerical simulations carried out to assess damage from stress waves alone, showed that most damage from experiments was caused by the expansion of gases, while its magnitude and extension were strongly dependent on confining conditions along the blasthole. The difficulty of quantifying the relative contribution of stress waves and gas expansion and the problems inherent in prediction of blast-induced damage are described. (C) 2015 Elsevier Ltd. All rights reserved
机译:通过结合有限离散元方法(FEM-DEM)的受控实验和数值模拟,已经评估了花岗岩露头中单孔爆破引起的破坏。通过测量爆破孔周围爆炸前和爆炸后的地震速度,通过高分辨率的交叉孔系统,可以在充斥的钻孔中将短时长炸药和长时炸药解耦,从而获得断层扫描。通过裂纹密度评估损伤,裂纹密度通过有效介质理论(EMT)方法对P波速度测量值进行反演来计算。尽管花岗岩岩体具有明显的各向同性和均质性,但发现的破坏在每个爆破孔周围沿垂直和水平方向都是高度不对称的。实验结果与数值模拟相结合以评估仅由应力波造成的破坏,结果表明,实验造成的破坏主要是由气体膨胀引起的,而气体的大小和扩展强烈取决于沿爆炸孔的约束条件。描述了量化应力波和气体膨胀的相对贡献的困难以及预测爆炸引起的破坏所固有的问题。 (C)2015 Elsevier Ltd.保留所有权利

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