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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Volcanic Plume Aging During Passive Degassing and Low Eruptive Events of Etna and Stromboli Volcanoes
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Volcanic Plume Aging During Passive Degassing and Low Eruptive Events of Etna and Stromboli Volcanoes

机译:火山羽毛在被动脱气期间的衰老和etna和stromboli火山的低爆发事件

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摘要

Volcanic gases and aerosols emissions from passive degassing or low eruptive events are now included in most climate models despite large uncertainties still exist about their injection height and their temporal and spatial variability. The aim of this study is to quantify the evolution of the gas and aerosols inside volcanic plumes with high kilometric-resolution simulations. With online chemistry and aerosols, these simulations are carried out together with in situ measurements of aerosol and gas-phase properties to assess the impact of Etna and Stromboli volcanic plumes produced by passive degassing and regular Strombolian activity, respectively. Comparison between simulation and observations show that the simulation reproduces the main characteristics of the volcanic plume evolution and confirms that volcanic plumes produced by passive degassing or low eruptive events have a strong impact on cloud condensation nuclei (CCN) formation increasing the number of CCN by a factor of 5. It was also shown that depending on the plume location, the aerosols will act as CCN at different distance from the vent. In the marine atmospheric boundary layer, the aerosols will act as CCN at proximity to the vent (less than 50 km) because of strong condensation sink inhibiting nucleation. In comparison, in the free troposphere, aerosols will act as CCN far from the vent, at more than 200 km. To the best of our knowledge, this study using in situ measurements as well as subkilometric simulations is unique.
机译:无源脱气或低爆发事件的火山气体和气溶胶排放现在包括在大多数气候模型中,尽管它们的注射高度以及它们的时间和空间可变性仍然存在大的不确定性。本研究的目的是通过高千米分辨率模拟量化火山羽毛内的气体和气溶胶的演变。通过在线化学和气溶胶,这些模拟与气溶胶和气相特性的原位测量一起进行,以评估EtNA和Stromboli Volcanics Plumes的影响,分别由被动脱气和规则的脱核活动产生。仿真与观察之间的比较表明,模拟再现火山羽流量的主要特征,并确认被动脱气或低喷发事件产生的火山羽毛对云凝结核(CCN)形成的强烈影响增加了CCN的数量还有5.还表明,取决于羽流位置,气溶胶将充当距离通风口不同的CCN。在海洋大气边界层中,由于抑制含量强的凝结水槽,气溶胶将充当通风口(小于50公里)的CCN。相比之下,在自由的对流层中,气溶胶将作为远离发泄的CCN,超过200公里。据我们所知,这项研究使用原位测量以及子杆状模拟是独一无二的。

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  • 作者单位

    Laboratoire de l'Atmosphère et des Cyclones (LACy/UMR 8105 CNRS Université de la Réunion Météo-France) Saint-Denis France;

    Laboratoire de l'Atmosphère et des Cyclones (LACy/UMR 8105 CNRS Université de la Réunion Météo-France) Saint-Denis France;

    Laboratoire de l'Atmosphère et des Cyclones (LACy/UMR 8105 CNRS Université de la Réunion Météo-France) Saint-Denis France;

    Laboratoire d'Aérologie (LA/UMR 5560 CNRS Université Paul Sabatier) Toulouse France;

    Istituto Nazionale di Geofisica e Vulcanologia Sezione di Palermo Palermo Italy;

    Istituto Nazionale di Geofisica e Vulcanologia Osservatorio Etneo Sezione di Catania Catania Italy;

    Laboratoire de Météorologie Physique (LaMP/UMR 6016 CNRS Université Blaise Pascal) Aubière France;

    Laboratoire de Météorologie Physique (LaMP/UMR 6016 CNRS Université Blaise Pascal) Aubière France;

    Laboratoire de Météorologie Physique (LaMP/UMR 6016 CNRS Université Blaise Pascal) Aubière France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Volcanic Plume Aging; During Passive; Degassing and Low;

    机译:火山羽毛老化;在被动期间;脱气和低;

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