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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Observational and Model Impact of Tonga Volcano Eruption on Schumann Resonance
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Observational and Model Impact of Tonga Volcano Eruption on Schumann Resonance

机译:Observational and Model Impact of Tonga Volcano Eruption on Schumann Resonance

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Abstract Tonga volcano eruption on 15 January 2022 was accompanied by an unprecedentedly high lightning activity in the volcano plume which significantly exceeded the lightning activity level of the whole globe. We compare model computations with the observed effect of the Tonga volcano eruption on the global electromagnetic Schumann resonance (SR). This SR disturbance was detected at many observatories covering the whole globe. SR power spectral density was computed using the updated model of the Earth‐ionosphere cavity, with the global lightning detections recorded by the World Wide Lightning Location Network, as a source. The modeled dynamics of the SR disturbances during Tonga eruption agrees qualitatively and quantitatively with SR recordings from six globally separated observatories. Unprecedentedly high lightning activity during the active phase of eruption caused significant suppression of the global lightning detection rate without noticeable effect on real global thunderstorm activity.
机译:2022年1月15日文摘汤加火山喷发伴随着一个空前高吗闪电活动的火山柱大大超过了闪电活动全球水平。计算的观察效果汤加全球火山喷发电磁舒曼共振(SR)。干扰检测在许多天文台覆盖整个地球。密度计算使用的更新模型地球电离层应承担的腔,与全球闪电探测记录由世界宽闪电位置的网络,作为一个来源。SR扰动在动力学建模汤加喷发定性和同意从六个定量与老唱片全球天文台分开。高闪电活动在活跃的阶段重要的抑制而引起的爆发全球闪电检出率明显影响真正的全球雷暴活动。

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