火山碎屑密度流和颗粒流中火山灰生成和碎屑形态计量学的实验约束

IF 2.5 Q2 Earth and Planetary Sciences
A. Hornby, U. Kueppers, Benedikt Mauer, Carina Poetsch, Donald Bruce Dingwell
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引用次数: 14

摘要

火山碎屑密度流(PDCs)可能是火山活动最大的近端初级危害,并产生大量细灰,可能对健康、环境和基础设施造成一系列危害。然而,目前还缺乏直接的、全面的、定量的灰生成观测,也没有直接的证据来约束控制灰生成的参数。本文采用实验方法研究了初始质量、材料密度和除灰量对聚苯乙烯致密基流产灰效率和同时破岩效率的影响。我们使用转鼓翻滚浮石和石渣在多个传输“距离”步骤(从0.2到6 km)。我们观察到,随着实验中定期除灰和初始质量的增加,产灰率增加。通过缩放到床层高度和碎屑直径,我们得到了所有实验中灰分产量的一般描述,作为流动距离、床层高度和平均碎屑直径的函数。我们证实了石蕊形状因子的变化与产生的灰分有关,并且产生的灰分粒度随着距离的增加而减小。最后,我们在实验中估计了剪切速率,并计算了惯性数,惯性数描述了流动过程中破碎尺度和流动尺度重排之间的比率。我们证明,在一定条件下,对于任何起始质量,分数灰产量都可以精确地计算为惯性数和流动距离的函数。这项工作阐明了PDCs中灰分产生和相关碎屑演化的第一个系统和可推广的实验参数化,并应提高我们理解流动流动性和相关危害的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental constraints on volcanic ash generation and clast morphometrics in pyroclastic density currents and granular flows

Pyroclastic density currents (PDCs) present perhaps the greatest proximal primary hazard of volcanic activity and produce abundant fine ash that can present a range of health, environment and infrastructure hazards. However, direct, fully quantitative observation of ash production in PDCs is lacking, and little direct evidence exists to constrain the parameters controlling ash generation in PDCs. Here, we use an experimental approach to investigate the effects of starting mass, material density and ash removal on the efficiency of ash generation and concurrent clast rounding in the dense basal flow of PDCs. We employ a rotary drum to tumble pumice and scoria lapilli clasts over multiple transport “distance” steps (from 0.2 to 6 km). We observe increased ash generation rates with the periodic removal of ash during the experiments and with increasing starting mass. By scaling to the bed height and clast diameter we obtain a general description for ash production in all experiments as a function of flow distance, bed height and average clast diameter. We confirm that changes in lapilli shape factors correlate with the ash fraction generated and that the grain size of ash produced decreases with distance. Finally, we estimate shear rate in our experiments and calculate the inertial number, which describes the ratio between clast-scale and flow-scale rearrangement during flow. We show that, under certain conditions, fractional ash production can be calculated accurately for any starting mass solely as a function of the inertial number and the flow distance. This work sheds light on some of the first systematic and generalizable experimental parameterizations of ash production and associated clast evolution in PDCs and should advance our ability to understand flow mobility and associated hazards.

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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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