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Rapid and slow: Varying magma ascent rates as a mechanism for Vulcanian explosions

机译:快速和缓慢:变化的岩浆上升速率是瓦肯火山爆炸的机制

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摘要

Vulcanian explosions are one of the most common types of volcanic activity observed at silicic volcanoes. Magma ascent rates are often invoked as being the fundamental control on their explosivity, yet this factor is poorly constrained for low magnitude end-member Vulcanian explosions, which are particularly poorly understood, partly due to the rarity of ash samples and low gas fluxes. We describe ash generated by small Vulcanian explosions at Volcan de Colima in 2013, where we document for the first time marked differences in the vesicularity, crystal characteristics (volume fraction, size and shape) and glass compositions in juvenile material from discrete events. We interpret these variations as representing differing ascent styles and speeds of magma pulses within the conduit. Heterogeneous degassing during ascent leads to fast ascending, gas-rich magma pulses together with slow ascending gas-poor magma pulses within the same conduit. This inferred heterogeneity is complemented by SO2 flux data, which show transient episodes of both open and closed system degassing, indicating efficient shallow fracture sealing mechanisms, which allows for gas overpressure to generate small Vulcanian explosions. (C) 2015 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:火山爆发是硅质火山中最常见的火山活动类型之一。岩浆上升速率通常被认为是对其爆炸性的基本控制,但是,对于低强度的端部瓦肯人爆炸(尤其是人们对它的了解很少),该因素的约束性很差,部分原因是灰烬样品稀少且气体通量较低。我们描述了2013年在火山科利马(Volcan de Colima)发生的小规模武尔肯人爆炸产生的灰烬,我们在该文件中首次记录了来自离散事件的少年材料中的囊泡,晶体特性(体积分数,大小和形状)和玻璃成分的明显差异。我们将这些变化解释为代表管道内岩浆脉冲的不同上升样式和速度。上升过程中的异质脱气会导致同一管道内快速上升的富气岩浆脉冲以及缓慢上升的贫气岩浆脉冲。 SO2通量数据补充了这种推断的非均质性,SO2通量数据显示了打开和关闭系统脱气的瞬时现象,表明有效的浅层裂缝密封机制,这使得气体超压产生了小型的Vulcanian爆炸。 (C)2015作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章(http://creativecommons.org/licenses/by/4.0/)。

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