首页> 美国卫生研究院文献>Springer Open Choice >Charge structure in volcanic plumes: a comparison of plume properties predicted by an integral plume model to observations of volcanic lightning during the 2010 eruption of Eyjafjallajökull Iceland
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Charge structure in volcanic plumes: a comparison of plume properties predicted by an integral plume model to observations of volcanic lightning during the 2010 eruption of Eyjafjallajökull Iceland

机译:火山羽流中的电荷结构:通过整体羽流模型预测的羽流特性与2010年冰岛Eyjafjallajökull火山爆发时观察到的火山闪电的比较

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摘要

Observations of volcanic lightning made using a lightning mapping array during the 2010 eruption of Eyjafjallajökull allow the trajectory and growth of the volcanic plume to be determined. The lightning observations are compared with predictions of an integral model of volcanic plumes that includes descriptions of the interaction with wind and the effects of moisture. We show that the trajectory predicted by the integral model closely matches the observational data and the model well describes the growth of the plume downwind of the vent. Analysis of the lightning signals reveals information on the dominant charge structure within the volcanic plume. During the Eyjafjallajökull eruption both monopole and dipole charge structures were observed in the plume. By using the integral plume model, we propose the varying charge structure is connected to the availability of condensed water and low temperatures at high altitudes in the plume, suggesting ice formation may have contributed to the generation of a dipole charge structure via thunderstorm-style ice-based charging mechanisms, though overall this charging mechanism is believed to have had only a weak influence on the production of lightning.
机译:在2010年Eyjafjallajökull喷发期间使用雷电映射阵列进行的火山雷电观测可以确定火山羽的轨迹和生长。将闪电观测结果与火山羽整体模型的预测进行比较,该模型包括与风的相互作用和水分影响的描述。我们表明,由积分模型预测的轨迹与观测数据紧密匹配,并且该模型很好地描述了出气口顺风的增长。对闪电信号的分析揭示了有关火山羽内主要电荷结构的信息。在Eyjafjallajökull喷发期间,羽状流中同时观察到单极和偶极电荷结构。通过使用整体羽状流模型,我们认为变化的电荷结构与羽状流中高海拔冷凝水的可用性和低温有关,这表明冰的形成可能有助于通过雷暴型冰产生偶极电荷结构基于充电的机制,尽管总体上认为这种充电机制对闪电的产生影响很小。

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