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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Ash from the Eyjafjallaj?kull eruption (Iceland): Fragmentation processes and aerodynamic behavior
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Ash from the Eyjafjallaj?kull eruption (Iceland): Fragmentation processes and aerodynamic behavior

机译:Eyjafjallaj?kull火山喷发的火山灰(冰岛):破碎过程和空气动力学行为

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摘要

The fragmentation process and aerodynamic behavior of ash from the Eyjafjallaj?kull eruption of 2010 are investigated by combining grain-size, Scanning Electron Microscopy (SEM), and quantitative particle morphology. Ash samples were collected on land in Iceland at 3–55 km distance from the volcanic vent, and represent various phases of the pulsating eruption. The grain size is fine even for deposits close to the vent, suggesting that the parent particle population at fragmentation consisted of a substantial amount of fine ash. SEM investigation reveals that ash produced during the first phase of the eruption consists of juvenile glass particles showing key features of magma-water interaction, suggesting that phreatomagmatism played a major role in the fragmentation of a vesicle-poor magma. In the last phase of the eruption, fragmentation was purely magmatic and resulted from stress-induced reaction of a microvesicular, fragile melt. The shape of ash, as determined by quantitative morphology analysis, is highly irregular, rendering the settling velocity quite low. This makes transportation by wind much easier than for other more regularly shaped particles of sedimentary origin. We conclude that the combination of magma’s fine brittle fragmentation and irregular particle shape was the main factor in the extensive atmospheric circulation of ash from the mildly energetic Eyjafjallaj?kull eruption.
机译:通过结合粒度,扫描电子显微镜(SEM)和定量颗粒形态研究了2010年艾雅法拉火山喷发的灰烬的破碎过程和空气动力学行为。灰烬样品是在距火山喷口3–55 km的冰岛陆地上采集的,代表了脉动喷发的各个阶段。即使对于靠近排气孔的沉积物,晶粒尺寸也很细,这表明碎裂时的母体粒子群由大量的细灰组成。扫描电镜研究表明,火山喷发第一阶段产生的灰分由显示出岩浆与水相互作用的关键特征的幼年玻璃颗粒组成,表明吞噬岩浆作用在泡囊稀少的岩浆破碎中起主要作用。在喷发的最后阶段,碎裂纯粹是岩浆,是应力引起的微泡状易碎熔体反应引起的。通过定量形态分析确定的烟灰形状高度不规则,沉降速度相当低。与其他形状更规则的沉积物颗粒相比,这使风运输更加容易。我们得出的结论是,岩浆细小脆性碎裂和不规则的颗粒形状的结合是轻度充满活力的艾雅菲亚拉冰盖火山喷发形成的广泛的大气灰分循环的主要因素。

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