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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Lightning-driven electric fields measured in the lower ionosphere: Implications for transient luminous events
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Lightning-driven electric fields measured in the lower ionosphere: Implications for transient luminous events

机译:在较低电离层中测量的闪电驱动电场:对瞬态发光事件的影响

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摘要

Transient luminous events above thunderstorms such as sprites, halos, and elves require large electric fields in the lower ionosphere. Yet very few in situ measurements in this region have been successfully accomplished, since it is typically too low in altitude for rockets and satellites and too high for balloons. In this article, we present some rare examples of lightning-driven electric field changes obtained at 75–130 km altitude during a sounding rocket flight from Wallops Island, Virginia, in 1995. We summarize these electric field changes and present a few detailed case studies. Our measurements are compared directly to a 2D numerical model of lightning-driven electromagnetic fields in the middle and upper atmosphere. We find that the in situ electric field changes are smaller than predicted by the model, and the amplitudes of these fields are insufficient for elve production when extrapolated to a 100 kA peak current stroke. This disagreement could be due to lightning-induced ionospheric conductivity enhancement, or it might be evidence of flaws in the electromagnetic pulse mechanism for elves.
机译:雷暴之类的瞬态发光事件如精灵,晕和精灵等雷暴,需要在较低电离层中进行大型电场。然而,该地区的原位测量虽然已经成功完成了,因为火箭和卫星的海拔高度通常太低,并且对于气球太高。在本文中,我们在1995年,我们展示了在弗吉尼亚州瓦尔波斯岛的探空火箭飞行期间在75-130公里处获得的闪电驱动电场变化的一些罕见的例子。我们总结了这些电场变化,并呈现了一些详细的案例研究。我们的测量比中高气氛的闪电驱动电磁场的2D数值模型进行比较。我们发现原位电场的变化小于模型的预测,并且当推断到100ka峰值电流冲程时,这些场的幅度不足以用于生产。这种分歧可能是由于闪电引起的电离层导电性增强,或者它可能是精灵电磁脉冲机构中的缺陷的证据。

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