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The role of gravitational instabilities in deposition of volcanic ash

机译:重力不稳定性在火山灰沉积中的作用

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摘要

Volcanic ash is a significant hazard for areas close to volcanoes and for aviation. Gravitational instabilities forming at the bottom of spreading volcanic clouds have been observed in many explosive eruptions. Here we present the first quantitative description of the dynamics of such instabilities, and correlate this with the characteristics of the fall deposit from observations of the 4 May 2010 Eyjafjallajökull (Iceland) eruption. Gravitational instabilities initially took the form of downward-propagating fingers that formed continuously at the base of the cloud, and appeared to be advected passively at the crosswind speed. Measurements of finger propagation are consistent with initial conditions inferred from previous studies of ash cloud dynamics. Dedicated laboratory analogue experiments confirmed that finger downward propagation significantly exceeded the settling speed of individual particles, demonstrating that gravitational instabilities provide a possible mechanism for enhanced sedimentation of fine ash. Our observations challenge the view that aggregation is the primary explanation of proximal fine ash sedimentation, and give direct support for the role of gravitational instabilities in providing regions of high particle concentration that can promote aggregation.
机译:火山灰对靠近火山的地区和航空业构成重大危害。在许多爆炸喷发中都观察到了火山云底部形成的引力不稳定性。在这里,我们介绍了这种不稳定性的动力学的第一个定量描述,并将其与2010年5月4日Eyjafjallajökull(冰岛)喷发的观测结果与秋季沉积物的特征相关联。引力不稳定性最初采取向下传播的手指的形式,这些手指在云层的底部连续形成,并且似乎以侧风的速度被动地平移。手指传播的测量与先前对灰云动力学研究得出的初始条件一致。专门的实验室模拟实验证实,手指向下传播的速度大大超过了单个颗粒的沉降速度,这表明重力不稳定性提供了增强细灰沉降的可能机制。我们的观察对以下观点提出了质疑,即聚集是近端细灰沉降的主要解释,并直接支持重力不稳定性在提供可促进聚集的高颗粒浓度区域中的作用。

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