首页> 外文期刊>Journal of Volcanology and seismology >Electrification of Eruptive Plumes Discharged by Shiveluch Volcano in Relation to the Character of the Responsible Explosion
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Electrification of Eruptive Plumes Discharged by Shiveluch Volcano in Relation to the Character of the Responsible Explosion

机译:由Shiveluch火山排出的喷发羽毛的电气化与负责任爆炸的特征相关

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摘要

It is shown that the rate of explosive eruptions on Shiveluch Volcano has become increasingly high during recent years, which makes the monitoring of the volcano using all available means highly urgent. We seek to introduce another technique into the multidisciplinary monitoring of explosive eruptions by analyzing responses in the vertical component of the atmospheric electric field (E-Z AEF) during the passage of eruptive plumes. We considered two Shiveluch eruptions that were different in vigor that occurred on December 16, 2016 and on June 14, 2017.The signals in the E-Z AEF were selected using multidisciplinary observations, viz., satellite-based observations, seismic, and infrared observations. Signals of negative polarity were recorded in the E-Z AEF dynamics in the near zone (<50 km) for both eruptions at once as ash began to fall. In the first of these cases, the ash-air plume was dry; thus, the aero-electrical structure was of the negatively charged plume type. The intense explosion that occurred in the second of these cases sent a great amount of ash and volcanic gases into the atmosphere, with 98% being steam; the result was a dipole aero-electrical structure due to eolian differentiation in the near zone. In the far zone (>100 km), the explosion produced a signal of positive polarity coming from an aero-electrical structure of the positively charged plume type from the aerosol column.
机译:结果表明,近年来,Shiveluch火山的爆发爆发速度越来越高,这使得使用所有可用手段的火山监测非常紧迫。我们试图通过分析喷发羽毛通道的垂直分量(E-Z AEF)的垂直分量的响应来将另一种技术引入爆炸性喷发的多学科监测。我们考虑了两次Shiveluch爆发,这在2016年12月16日和2017年6月14日发生的活力。使用多学科观察,卫星观察,地震和红外观察,选择了E-Z AEF中的信号。在近区域的E-Z AEF动力学中记录了负极性的信号,因为Ash开始落下时喷发一次。在这些情况下,灰空气羽毛干燥;因此,航空电气结构是带负电荷的羽状型。在这些情况的第二个中发生的强烈爆炸将大量的灰分和火山气体送入大气中,98%是蒸汽;由于近区域的Eolian差异,结果是偶极航空电气结构。在远区(> 100 km)中,爆炸产生了来自来自气溶胶柱的带正电荷羽流式的航空电气结构的正极性的信号。

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    Russian Acad Sci Kamchatka Branch Fed Res Ctr Unified Geophys Serv Bulvar Piipa 9 Petropavlovsk Kamchatski 683006 Russia;

    Russian Acad Sci Kamchatka Branch Fed Res Ctr Unified Geophys Serv Bulvar Piipa 9 Petropavlovsk Kamchatski 683006 Russia;

    Russian Acad Sci Inst Volcanol &

    Seismol Far East Branch Bulvar Piipa 9 Petropavlovsk Kamchatski 683006 Russia;

    Russian Acad Sci Inst Volcanol &

    Seismol Far East Branch Bulvar Piipa 9 Petropavlovsk Kamchatski 683006 Russia;

    Russian Acad Sci Inst Volcanol &

    Seismol Far East Branch Bulvar Piipa 9 Petropavlovsk Kamchatski 683006 Russia;

    Russian Acad Sci Inst Volcanol &

    Seismol Far East Branch Bulvar Piipa 9 Petropavlovsk Kamchatski 683006 Russia;

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  • 正文语种 eng
  • 中图分类 地球物理学;
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