首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Experiments with vertically and laterally migrating subsurface explosions with applications to the geology of phreatomagmatic and hydrothermal explosion craters and diatremes
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Experiments with vertically and laterally migrating subsurface explosions with applications to the geology of phreatomagmatic and hydrothermal explosion craters and diatremes

机译:垂直和横向迁移地下爆炸的实验及其在岩浆岩和热液爆炸坑和异常地质中的应用

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We present results of experiments that use small chemical explosive charges buried in layered aggregates to simulate the effects of subsurface hydrothermal and phreatomagmatic explosions at varying depths and lateral locations, extending earlier experimental results that changed explosion locations only along a vertical axis. The focus is on the resulting crater size and shape and subcrater structures. Final crater shapes tend to be roughly circular if subsurface explosion epicenters occur within each other's footprints (defined as the plan view area of reference crater produced by a single explosion of a given energy, as predicted by an empirical relationship). Craters are elongate if an epicenter lies somewhat beyond the footprint of the previous explosion, such that their footprints overlap, but if epicenters are too far apart, the footprints do not overlap and separate craters result. Explosions beneath crater walls formed by previous blasts tend to produce inclined (laterally directed) ejecta jets, while those beneath crater centers are vertically focused. Lateral shifting of explosion sites results in mixing of subcrater materials by development of multiple subvertical domains of otherwise pure materials, which progressively break down with repeated blasts, and by ejection and fallback of deeper-seated material that had experienced net upward displacement to very shallow levels by previous explosions. A variably developed collar of material that experienced net downward displacement surrounds the subvertical domains. The results demonstrate key processes related to mixing and ejection of materials from different depths during an eruptive episode at a maar-diatreme volcano as well as at other phreatomagmatic and hydrothermal explosion sites.
机译:我们提供的实验结果是,使用小的化学炸药包埋在分层的聚集体中,以模拟不同深度和侧向位置的地下热液爆炸和岩浆爆炸的影响,扩展了仅沿垂直轴更改爆炸位置的早期实验结果。重点是产生的弹坑尺寸和形状以及弹坑结构。如果地下爆炸的震中发生在彼此的足迹内(定义为由给定能量的一次爆炸所产生的参考弹坑的俯视图区域,如经验关系所预测),则最终弹坑的形状往往大致呈圆形。如果震中点位于前一次爆炸的足迹范围之外,从而使它们的足迹重叠,则陨石坑会伸长,但如果震中点相距太远,则足迹不会重叠并且会形成单独的陨石坑。由先前爆炸形成的火山口壁下方的爆炸往往会产生倾斜(横向)的喷射流,而火山口中心下方的爆炸则是垂直聚焦的。爆炸位置的横向移动通过发展原本纯净的材料的多个亚垂直域(通过反复爆炸逐渐分解),以及将经历了净向上位移到非常浅水平的深层材料的弹射和回落而导致了坑坑洼洼的材料混合以前的爆炸。经历了向下净位移的材料的可变展开环围绕着亚垂直区域。研究结果表明,在一个maar-diatreme火山以及其他岩浆岩和热液爆炸地点的一次喷发期间,来自不同深度的物质混合和喷射的关键过程。

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