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火山通道和羽流中的磨损产生的灰烬。

Ash production by attrition in volcanic conduits and plumes.

机构信息

Department of Earth Sciences, Durham University, South Road, Durham, DH1 3LE, UK.

Department of Earth, Ocean & Atmospheric Sciences, University of British Columbia, Vancouver, British Columbia, V6T 1Z4, Canada.

出版信息

Sci Rep. 2017 Jul 17;7(1):5538. doi: 10.1038/s41598-017-05450-6.

Abstract

Tephra deposits result from explosive volcanic eruption and serve as indirect probes into fragmentation processes operating in subsurface volcanic conduits. Primary magmatic fragmentation creates a population of pyroclasts through volatile-driven decompression during conduit ascent. In this study, we explore the role that secondary fragmentation, specifically attrition, has in transforming primary pyroclasts upon transport in volcanic conduits and plumes. We utilize total grain size distributions from a suite of natural and experimentally produced tephra to show that attrition is likely to occur in all explosive volcanic eruptions. Our experimental results indicate that fine ash production and surface area generation is fast (<15 min) thereby rapidly raising the fractal dimension of tephra deposits. Furthermore, a new metric, the Entropy of Information, is introduced to quantify the degree of attrition (secondary fragmentation) from grain size data. Attrition elevates fine ash production which, in turn, has consequences for eruption column stability, tephra dispersal, aggregation, volcanic lightening generation, and has concomitant effects on aviation safety and Earth's climate.

摘要

火山灰沉积物是由爆炸式火山喷发形成的,它们可以作为间接探测地下火山通道中碎裂过程的手段。原生岩浆碎裂通过在管道上升过程中挥发驱动的减压作用,产生了火山碎屑岩群体。在这项研究中,我们探讨了在火山管道和羽流中运输过程中,次生碎裂(特别是磨损)对原生火山碎屑岩的转化作用。我们利用一系列天然和实验产生的火山灰的总粒度分布来表明,磨损可能在所有爆炸式火山喷发中都会发生。我们的实验结果表明,细灰的产生和表面积的生成速度很快(<15 分钟),从而迅速提高了火山灰沉积物的分形维数。此外,引入了一种新的度量标准,即信息熵,来从粒度数据中量化磨损(次生碎裂)的程度。磨损会增加细灰的产生,这反过来又会对喷发柱的稳定性、火山灰的分散、聚集、火山闪电的产生产生影响,同时对航空安全和地球气候也有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ddd/5514120/8f1e2e9ebc44/41598_2017_5450_Fig1_HTML.jpg

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