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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Decoding pyroclastic density current flow direction and shear conditions in the flow boundary zone via particle-fabric analysis
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Decoding pyroclastic density current flow direction and shear conditions in the flow boundary zone via particle-fabric analysis

机译:通过粒子织物分析解码流动边界区中的发球菌密度电流流动方向和剪切条件

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摘要

One of the greatest challenges in volcanology is extracting information from volcanic deposits that inform the conditions at the time of emplacement. Here we explore particle-shape fabric within samples from the column-collapse pyroclastic density current (PDC) deposits generated by the 18 May 1980 eruption of Mt. Saint Helens (MSH). Particle shape-fabric is the mutual alignment of particles within a sample, which is dependent on shearing conditions at the time of deposition. Here, particle shape-fabric is used to address the following hypotheses: (1) particle shape fabric will align with bulk flow direction estimates made by previous studies, while resolving fine scale flow direction variations; (2) samples extracted from PDC deposits immediately above a basal contact will show higher extents of fabric development (i.e. clast alignment) relative to samples extracted well above the contact; and (3) samples extracted from cross-stratified deposits will have higher extents of fabric development relative to samples extracted from the massive facies. We find that fabric orientations approximate previous flow direction interpretations of general flow, from south to north, and channelization due to paleo-topography. Furthermore, shape fabric records flow interaction with the substrate, created by debris avalanche deposits, leading to fine scale variations in flow paths. These variations are recorded in samples extracted near the substrate-deposit contact. Moreover, these samples do not show a higher measure of clast alignment relative to samples taken well above flow contacts but do exhibit bimodal clast alignment. This suggests some degree of traction transport and thus higher shearing conditions relative to when the currents deposited massive lapilli tuffs. Samples extracted from the cross stratified deposits do not show higher extents of fabric development relative to the massive deposits, supporting previous interpretations that these deposits formed from a rapidly sedimenting, concentrated flow boundary zone that was thin enough to be frequently interrupted or influenced by the overriding turbulent portion of the flow. Finally, observations of fine scale variability in measured fabric within a single outcrop indicates unsteady flow conditions and step-wise aggradation during deposition. This work demonstrates that particle shape-fabric analyses can aid in decoding PDC flow conditions. Future complementary experimental work may allow for the extraction of quantitative information regarding the magnitudes of shear and subsequent particle alignments within the flow boundary zone, providing further insight into PDC dynamics. (C) 2020 Elsevier B.V. All rights reserved.
机译:火山学中最大的挑战之一是从火山存款中提取信息,以便在施加时通知条件。在这里,我们探讨了从柱塌陷的柱塌陷的喷弹密度电流(PDC)沉积物中的样品中的粒子形状织物。圣海伦(MSH)。颗粒形状是样品中颗粒的相互对准,其取决于沉积时的剪切条件。这里,颗粒形状织物用于解决以下假设:(1)颗粒形状织物将与先前研究制作的散装流动方向估计对齐,同时解决细尺流动方向变化; (2)从PDC沉积物中提取的样品在基础触点上方,将显示相对于良好的样品在接触方面升高的样品较高的织物显影(Clast对准)的范围; (3)从交叉分层沉积物中提取的样品相对于从大规模相中提取的样品具有更高的织物显影的范围。我们发现,由于古地形,从南北到北方的一般流动的织物方向近似一般流动的释放。此外,形状织物记录由碎屑雪崩沉积物产生的与基板的流动相互作用,导致流动路径的细尺变化。这些变化在靠近底物沉积触点附近提取的样品中记录。此外,这些样品不显示相对于在流动触点上方的样品相对于样品的较高速度对准,而是表现出具有双峰的含水丝裂片对准。这表明一定程度的牵引传输,因此相对于沉积大规模的Lapilli Tuffs时的剪切条件更高的剪切条件。从交叉分层沉积物中提取的样品不显示相对于大量沉积物的织物显影范围更高的织物显影的范围,支持从迅速沉淀,浓缩的流边界区形成的这些沉积物,这足以经常被频繁中断或受到覆盖的影响流动的湍流部分。最后,在单个露头内的测量织物中的细度变异性的观察表明在沉积期间不稳定的流动条件和逐步的加重。这项工作表明,颗粒形状 - 织物分析可以帮助解码PDC流动条件。未来的互补实验工作可以允许提取关于流边界区内的剪切和随后的粒子对准的量化信息,从而进一步了解PDC动态。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Journal of Volcanology and Geothermal Research》 |2020年第15期|106978.1-106978.13|共13页
  • 作者单位

    Boise State Univ Dept Geosci 1295 Univ Dr Boise ID 83706 USA|Univ Oregon Earth Sci Dept 1272 Univ Oregon Eugene OR 97403 USA;

    Boise State Univ Dept Geosci 1295 Univ Dr Boise ID 83706 USA;

    Boise State Univ Dept Geosci 1295 Univ Dr Boise ID 83706 USA;

    Univ Autonoma San Luis Potosi Inst Geol Av Dr Manuel Nava 5 San Luis Potosi 78240 San Luis Potosi Mexico;

    Boise State Univ Dept Geosci 1295 Univ Dr Boise ID 83706 USA;

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