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Transport of volcanic aerosol in the troposphere: The case study of the 2002 Etna plume

机译:对流层中火山气溶胶的运输:以2002 Etna羽为例

摘要

The transport of aerosol in the troposphere during the 2002 eruption of Mount Etna was investigated integrating lidar observations and numerical simulations. The case study concentrates on the period 30 October to 2 November. The lidar observations performed in Potenza, Italy, reveal the presence of aerosol layers made up of young sulfate particles and a low soot content, characteristic of the volcano's emission. Downward large-scale motion was measured, with a velocity larger than that due to gravitational sedimentation. Forward trajectories from the volcano simulated from 27 October to 4 November show that particles released at the beginning of the period reached Potenza after traveling over the southern and western Mediterranean basin (partially including the Sahara region); direct northward transport occurred on 31 October and 1 November. The main result of this study is to highlight how the integrated use of observations and model simulations leads to understanding the main features of transport in this case study. Furthermore, some specific points are outlined. There is fair agreement between the simulated and observed presence of particles over Potenza. The vertical structure of the aerosol layers and the downward motion are also well evidenced. Time variations of the particle concentration deduced from measurements and approximately estimated from the numerical simulations also show qualitative agreement.
机译:结合激光雷达观测和数值模拟,研究了2002年埃特纳火山爆发时对流层气溶胶的传输。该案例研究集中于10月30日至11月2日。在意大利波坦察(Potenza)进行的激光雷达观测显示,存在由年轻硫酸盐颗粒组成的气溶胶层,并且烟灰含量低,这是火山喷发的特征。测量了向下的大规模运动,其速度大于重力沉降造成的速度。从10月27日至11月4日模拟的火山的前进轨迹表明,在该时期开始时释放的颗粒经过地中海南部和西部盆地(部分包括撒哈拉地区)后到达了波坦察。直接北移发生在10月31日和11月1日。这项研究的主要结果是强调观察和模型模拟的综合使用如何导致理解本案例研究中运输的主要特征。此外,还概述了一些具体点。在波坦察上模拟和观察到的颗粒之间存在着合理的共识。气溶胶层的垂直结构和向下运动也得到了充分证明。由测量得出的数值模拟和近似估计的颗粒浓度的时间变化也显示出定性的一致性。

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