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Fragmentation and Plinian eruption of crystallizing basaltic magma

机译:结晶玄武岩岩浆的碎片和铅爆发

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Basalt is the most ubiquitous magma on Earth, erupting typically at intensities ranging from quiescently effusive to mildly explosive. The discovery of highly explosive Plinian eruptions of basaltic magma has therefore spurred debate about their cause. Silicic eruptions of similar style are a consequence of brittle fragmentation, as magma deformation becomes progressively more viscoelastic. Magma eventually crosses the glass transition and fragments due to a positive feedback between water exsolution, viscosity and decompression rate. In contrast to silicic eruptions, the viscosity of basaltic magmas is thought to be too low to reach conditions for brittle fragmentation. Pyroclasts from several basaltic Plinian eruptions, however, contain abundant micron-size crystals that can increase magma viscosity substantially. We therefore hypothesize that magma crystallization led to brittle fragmentation during these eruptions. Using combined oscillatory and extensional rheometry of concentrated particle-liquid suspensions that are dynamically similar to microcrystalline basaltic magma, we show that high volume fractions of particles and extension rates of about 1 s(-1) or greater result in viscoelastic deformation and brittle fracture. We further show that for experimentally observed crystallization rate, basaltic magma can reach the empirical failure conditions when erupting at high discharge rates. (C) 2018 Elsevier B.V. All rights reserved.
机译:玄武岩是地球上最无处不在的岩浆,爆发通常在强烈的波动范围内从静态爆炸的爆发。因此,发现高度爆炸性的玄武岩岩浆爆发因此对其原因进行了辩论。随着岩浆变形变得逐渐变形,易碎的粘弹性,类似风格的硅爆发是脆性碎片的结果。岩浆最终通过水射输出,粘度和减压率之间的正反馈来穿越玻璃转变和碎片。与硅喷发相比,玄武岩岩浆的粘度被认为太低,不能达到脆性碎片的条件。然而,来自几种玄武岩型爆发的热核活粒含有丰富的微米尺寸晶体,可以大大增加岩浆粘度。因此,我们假设岩浆结晶导致在这些喷发过程中脆性碎裂。使用与微晶玄武岩岩浆动态相似的浓粒子 - 液体悬浮液的组合振荡和延伸流变学,我们表明颗粒的高体积分数和约1s(-1)或更大的粘弹性变形和脆性骨折。我们进一步表明,对于实验观察到的结晶速率,玄武岩岩浆在高放电速率下爆发时可以达到经验故障条件。 (c)2018年elestvier b.v.保留所有权利。

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