Propagation of waves in the middle and upper atmosphere excited by intense events at the earth’s surface and lower atmosphere
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摘要: 地表和低层大气中的剧烈事件 — 如火山爆发、地震、台风、雷暴以及人为爆炸等 — 能够激发多种波动,这些波动以声波和重力波的形式向中高层大气和电离层传播,并对中高层大气及电离层产生显著影响。此类事件为研究地球各圈层耦合的物理机制提供了典型样本。本文回顾了肖佐教授等人在地震、台风等剧烈事件对电离层影响的观测与研究成果。文章重点介绍了我们所建立的覆盖中国上空的双层气辉观测台网,以及利用该探测系统对火山爆发、台风和雷暴等事件所激发重力波在中高层大气与电离层中传播特性及其效应的相关研究。研究结果表明:(1)尽管火山爆发产生的重力波难以直接长距离大范围在中高层大气中传播,但通过海—气相互作用可以实现长距离大范围的传播;(2)背景大气结构对重力波传播具有举足轻重的影响,其中大气波导可支持重力波发生反常的长距离大范围的传播;(3)中小尺度重力波虽难以直接上传至热层,但二次波机制可有效促进重力波从中层大气向高层大气传播;(4)对台风事件的研究为低层大气剧烈事件影响高层大气和电离层提供了直接的观测证据。
Abstract: Severe events in the Earth's surface and lower atmosphere—such as volcanic eruptions, earthquakes, typhoons, thunderstorms, and anthropogenic explosions—can excite various types of waves. These waves propagate into the middle/upper atmosphere and ionosphere in the form of acoustic and gravity waves, exerting significant impacts on these regions. Such events provide typical case studies for investigating the physical mechanisms of coupling between Earth's various spheres. This paper reviews the observational and research findings of Professor Xiao Zuo's team regarding the effects of severe events like earthquakes and typhoons on the ionosphere. The paper also highlights the establishment of a dual-layer airglow observation network over China and the utilization of this detection system to study the propagation characteristics and effects of gravity waves excited by events such as volcanic eruptions, typhoons, and thunderstorms in the middle/upper atmosphere and ionosphere. The research results reveal that although gravity waves generated by volcanic eruptions cannot propagate directly over long distances in the middle and upper atmosphere, they can achieve extensive and long-range transmission through ocean-atmosphere interactions. The background atmospheric structure plays a crucial role in gravity wave propagation, with atmospheric waveguides enabling anomalous long-distance propagation of gravity waves. Although small- to medium-scale gravity waves have difficulty directly propagating upward to the thermosphere, secondary wave mechanisms can effectively facilitate their propagation from the middle atmosphere to the upper atmosphere. Furthermore, studies on typhoon events provide direct observational evidence of how severe lower atmospheric events influence the upper atmosphere and ionosphere.
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Key words:
- airglow /
- gravity waves /
- volcanic eruptions /
- typhoons /
- thunderstorms /
- middle and upper atmosphere /
- ionospheric irregularity
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