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Rheology of basaltic ash from Stromboli volcano inferred froth intermittent compression experiments

机译:Stromboli火山岩中玄武灰的流变学推断泡沫间歇压缩实验

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摘要

After ash-dominated Strombolian eruption, considerable amount of ash falls back to the volcanic conduit. By the fallback ash, the formation of a dense near-surface region is expected because it is compacted by weights of its own and other fallback clasts. The dense cap causes the gas pressure inside the conduit to increase, which promotes a forthcoming eruption. Under such conditions, the rheology of the fallback ash plays an important role in this cyclical eruption mechanism. However, little attention has been given to the point. We examined the rheology of ash collected at Stromboli volcano via intermittent compression experiments changing temperature and compression time/rate. The elastic modulus, the viscosity, and the relaxation time were estimated by a viscoelastic Maxwell model. The results show that the elasticity and the viscosity dominantly depend on the compression rate and the temperature respectively, although both of them vary with time. Thus, the ash behaves either elastically or viscously depending on the external conditions and time. The viscoelastic characteristics can be explained by magnitude relationships between the characteristic relaxation time and times for compression and rest processes. This indicates that the balance of the time scales is key to determining the rheological characteristics. (C) 2017 Elsevier B.V. All rights reserved.
机译:在以灰烬为主的斯特伦勃朗火山喷发之后,大量的灰烬回落到火山管道中。通过后备灰分,预计会形成密集的近地表区域,因为它会因自身和其他后备裂块的重量而被压实。密密的盖子使导管内的气压升高,从而促进喷发。在这种条件下,后备灰分的流变学在这种周期性喷发机制中起着重要作用。但是,很少有人关注这一点。我们通过改变温度和压缩时间/速率的间歇性压缩实验检查了在斯特龙博利火山收集的灰分的流变性。弹性模量,粘度和松弛时间通过粘弹性Maxwell模型估计。结果表明,弹性和粘度主要取决于压缩率和温度,尽管它们都随时间变化。因此,灰烬根据外部条件和时间而具有弹性或粘性。可以通过特征驰豫时间与压缩和静止过程的时间之间的大小关系来解释粘弹性特征。这表明时标的平衡是确定流变特性的关键。 (C)2017 Elsevier B.V.保留所有权利。

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