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Intermittent and efficient outgassing by the upward propagation of film ruptures in a bubblymagma

机译:气泡状岩浆中膜破裂向上传播的间歇性有效放气

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We simulated the ascent of bubbly magma in a volcanic conduit by slow decompression experiments using syrup foam as a magma analogue. During decompression, some large voids appear in the foam. The expansion of one void deep in the foam leads to another void expansion, and the void expansion then propagates upward. The void expansion finally reaches the surface of the foam to originate outgassing. The velocity of the upward propagation of void expansions is essentially the same as the rupturing velocity of the bubble film, suggesting that the rupture of films separating each void propagates upward to create the pathway for outgassing. The calculated apparent permeability of decompressed foam can become higher than that measured for natural pumices/scoriae. The upward propagation of film ruptures thus allows for efficient outgassing. This may also appear as the mechanism for energetic gas emissions originating at a depth, such as Strombolian eruptions.
机译:通过使用糖浆泡沫作为岩浆类似物的缓慢减压实验,我们模拟了火山管道中起泡岩浆的上升。在减压过程中,泡沫中会出现一些大的空隙。泡沫深处的一个空隙的膨胀导致另一个空隙的膨胀,然后空隙的膨胀向上传播。空隙膨胀最终到达泡沫的表面,开始脱气。空隙膨胀的向上传播的速度与气泡膜的破裂速度基本相同,这表明分隔每个空隙的膜的破裂向上传播,从而形成了除气的路径。计算出的减压泡沫的表观渗透率可以变得高于天然泡沫/ umi渣的表观渗透率。因此,膜破裂的向上传播允许有效的除气。这也可能表现为源自深处的高能气体排放的机制,例如Strombolian喷发。

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