首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Welding of pyroclastic conduit infill: A mechanism for cyclical explosive eruptions
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Welding of pyroclastic conduit infill: A mechanism for cyclical explosive eruptions

机译:火山碎屑导管填充物的焊接:周期性爆炸爆发的机制

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Vulcanian-style eruptions are small- to moderate-sized, singular to cyclical events commonly having volcanic explosivity indices of 1–3. They produce pyroclastic flows, disperse tephra over considerable areas, and can occur as precursors to larger (e.g., Plinian) eruptions. The fallout deposits of the 2360 B.P. eruption of Mount Meager, BC, Canada, contain bread-crusted blocks of welded breccia as accessory lithics. They display a range of compaction/welding intensity and provide a remarkable opportunity to constrain the nature and timescales of mechanical processes operating within explosive volcanic conduits during repose periods between eruptive cycles. We address the deformation and porosity/permeability reduction within natural pyroclastic deposits infilling volcanic conduits. We measure the porosity, permeability, and ultrasonic wave velocities for a suite of samples and quantify the strain recorded by pumice clasts. We explore the correlations between the physical properties and deformation fabric. Based on these correlations, we reconstruct the deformation historywithin the conduit,model the permeability reduction timescales, and outline the implications for the repressurization of the volcanic conduit. Our results highlight a profound directionality in the measured physical properties of these samples related to the deformation-induced fabric. Gas permeability varies drastically with increasing strain and decreasing porosity along the compaction direction of the fabric but varies little along the elongation direction of the fabric. The deformation fabric records a combination of compaction within the conduit and postcompaction stretching associated with subsequent eruption. Model timescales of these processes are in good agreement with repose periods of cyclic vulcanian eruptions.
机译:火山喷发型是中小型,单一到周期性事件,通常火山爆发指数为1-3。它们产生火山碎屑流,将色拉散布在相当大的区域,并且可能以较大爆发(例如普林尼亚)爆发的先兆形式出现。公元前2360年的沉积物加拿大不列颠哥伦比亚省的Meager火山喷发,含有面包结壳的角砾岩块作为辅助石器。它们显示出一系列的压实/焊接强度,并提供了一个难得的机会来限制在爆发循环之间的休止期内在爆炸性火山管道内运行的机械过程的性质和时间尺度。我们研究了填充火山岩管道的天然火山碎屑沉积物中的变形和孔隙度/渗透率降低。我们测量一组样品的孔隙率,渗透率和超声波速度,并量化浮石碎屑记录的应变。我们探索了物理性质和变形织物之间的相关性。基于这些相关性,我们重建了导管内的变形历史,对渗透率降低的时间尺度进行建模,并概述了对火山导管再加压的意义。我们的结果凸显了这些样品中与变形引起的织物相关的实测物理特性具有深远的方向性。透气率随着应变的增加和孔隙率的减小而沿织物的压实方向急剧变化,而沿织物的延伸方向则几乎不变。变形织物记录了导管内的压实和与后续喷发相关的后压实拉伸的组合。这些过程的模型时标与周期性火山爆发的休止期非常吻合。

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