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Gas flux cyclic regime at an open vent magmatic column inferred from seismic and acoustic records

机译:从地震和声学记录推断出开放式岩浆柱的气体磁通循环状态

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摘要

On August 7, 2014, a new effusive vent opened on the northern flank of Stromboli. A characteristic pattern was observed in both seismic and infrasonic signal amplitudes prior to this effusive eruption. The pattern consisted of the repeating cycle: (1) quiet phase, (2) puffing phase, and (3) explosion phase. Correlation between seismic and infrasound signal suggests that pulses in the puffing phase were caused by repetitive bursts of small gas pockets at the central crater, while the explosion phase coincided with an explosion at the central crater. We show that degassing of the magma column occurred in cycles of increasing gas flux, which controlled the transition from a bubbly flow (puffing phase), to a slug flow (explosion phase) gas regime. The quiet phase was characterized by a constant time length of 150?s, indicating that the gas rose in the magma column as well-organized waves of gas layers. These cycles represent cyclic changes of the gas flux regime in the shallow magma column, associated with increases in the magma-gas supply input rate before the effusive eruption.
机译:2014年8月7日,在Stromboli的北侧侧面打开了一种新的浮雕。在这种散发之前,在地震和速率爆发之前观察到特征模式。该模式由重复循环组成:(1)安静相,(2)膨化阶段,和(3)爆炸阶段。地震和基础驱动信号之间的相关性表明膨化阶段中的脉冲是由中央火山口的小型气袋的重复爆裂引起的,而爆炸阶段则恰逢中央火山口的爆炸。我们表明岩浆柱的脱气发生在增加气体通量的循环中,这将从泡沫流(膨化阶段)的过渡控制到SLUG流(爆炸阶段)气体状态。安静的阶段的特征在于150?S的恒定时间长度,表明气体在岩浆柱中升起,作为组织的气体层。这些循环代表浅岩浆柱中的气体通量方案的循环变化,与散发前的岩浆 - 气体供应输入速率的增加相关。

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