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An analysis of shear waves generated by the Sterling explosion

机译:斯特林爆炸产生的剪切波分析

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We show that the near-field shear waves from the decoupled explosion Sterling were likely caused by the cavity shape, which was approximately spherical except for a flat floor due to melted and recrystallized salt. We model the impact of the explosion shock wave on the cavity walls using a two-dimensional (2-D) Eulerian finite difference code that simulates the evolution of the air shock in the cavity coupled with 2-D Lagrangian fmite difference code that simulates the nonlinear region outside the cavity. Calculated shear waves generated by the asymmetric impact of the shock wave on the cavity walls match the observed initial shear wave amplitudes and radiation pattern. The observations also have substantial P and S coda, which are not reproduced by the calculations. Similarity of coda waveforms with distance indicates that their source is at or very near the cavity. Longer time modeling of the air shock evolution appears to produce a more realistic source function and provide a better match to the coda and indicates that the coda are caused by air reverberations between the top and bottom of the cavity. We assess the likelihood that fractures created by the tamped explosion that formed the cavity Salmon were reopened by Sterling. Modeling of hydrofracture propagation driven by the Sterling explosion, by coupling stress wave dynamics in rock with fluid mechanics in the fractures, shows that the cavity pressure is insufficient to overcome the overburden to propagate fractures into rock, except for the area immediately below the explosion on the cavity floor.
机译:我们表明,解耦爆炸斯特林产生的近场剪切波很可能是由空腔形状引起的,除了由于熔化和重结晶的盐而形成的平坦地面外,空腔形状近似球形。我们使用二维(2-D)欧拉有限差分代码模拟爆炸冲击波对型腔壁的影响,该代码模拟了空腔中空气冲击的演变,并模拟了二维拉格朗日有限差分代码。空腔外部的非线性区域。激波对型腔壁的不对称冲击产生的计算剪切波与观测到的初始剪切波振幅和辐射方向图相匹配。观测值还具有大量的P和S尾码,计算结果未重现。尾声波形与距离的相似性表明它们的声源在空腔处或附近。空气冲击演化的较长时间建模似乎会产生更逼真的源函数,并提供与尾声的更好匹配,并表明尾声是由空腔顶部和底部之间的空气混响引起的。我们评估了由斯特林重开形成鲑鱼腔的夯实爆炸所产生的骨折的可能性。通过将岩石中的应力波动力学与裂缝中的流体力学耦合起来,由斯特林爆炸驱动的水力裂缝传播的模型表明,腔体压力不足以克服上覆岩层,从而将裂缝传播到岩石中,除了紧接爆炸下方的区域。腔底。

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