雷暴电过程相关科学与创新进展

IF 7.1 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Christoph Köhn, Torsten Neubert, Martin Füllekrug, Ute Ebert, Sander Nijdam, Olivier Chanrion, Nikolai Østgaard, Martino Marisaldi, Serge Soula, Joan Montanyà, Francisco Gordillo-Vázquez, Alejandro Luque, Jannis Teunissen, Joachim Holbøll, Alec Bennett, Paul Smith, Victor Lorenzo, Hugh J. Christian, Søren F. Madsen, Diana Mihailova, Jean-François Boissin, Stéphane Pedeboy, Laure Chaumat, Matthias Heumesser, Krystallia Dimitriadou, Carolina Maiorana, Simon Ghilain, Zaida Gomez Kuri, Adam Peverell, Michele Urbani, Thi Ny Kieu, Andy Martinez, Hani Francisco, Mojtaba Niknezhad, Miguel B. Teixeira-Gomes, Andrea Pizzuti, Marcelo Arcanjo, Shahriar Mirpour, Xue Bai, Victor Reglero
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引用次数: 0

摘要

闪电是大气层中一种高能量的放电过程,经过几个复杂的阶段演变而来。闪电被认为是一个重要的气候变量,因为它影响温室气体的浓度。它还威胁到电气和电子设备,特别是在风力涡轮机等高架结构上,它还危及使用具有低导电性的现代复合材料制造的飞机。在过去的几十年里,我们对大气电的基本理解一直在不断发展。例如,在过去30年里,在雷暴上空的大气中发现了放电过程,在平流层和中间层中发现了所谓的瞬变发光事件(TLEs),从经过雷暴上空的低轨道卫星上观察到伴随光子、电子和正电子光束的地面伽马射线闪光(TGFs)。类似闪电的放电也出现在等离子体和高压技术中。SAINT网络的形成是为了将不同的研究领域结合在一起。圣是“雷暴的科学与创新”玛丽Skłodowska-Curie创新培训网络的欧盟地平线2020计划。从2017年到2021年,15名博士生从卫星和地面观测闪电过程,开发模型并进行实验室实验。该项目在地球物理研究、等离子体技术和相关产业之间架起了一座桥梁。本文对SAINT网络合作的结果进行了总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent Results on Science and Innovation Related to Electrical Processes of Thunderstorms

Recent Results on Science and Innovation Related to Electrical Processes of Thunderstorms

Lightning is a highly energetic electric discharge process in our atmosphere, evolving in several complex stages. Lightning is recognized as an essential climate variable, as it affects the concentration of greenhouse gases. It also threatens electrical and electronic devices, in particular, on elevated structures like wind turbines, and it endangers aircraft built with modern composite materials with inherently low electric conductivity. During the past decades, our fundamental understanding of atmospheric electricity has continued to evolve. For example, during the past 30 years, discharge processes were discovered in the atmosphere above thunderstorms, the so-called transient luminous events (TLEs) in the stratosphere and mesosphere, and terrestrial gamma-ray flashes (TGFs), accompanied with beams of photons, electrons and positrons, were observed from low orbiting satellites passing over thunderstorms. Lightning-like discharges also appear in plasma and high-voltage technology. The SAINT network was formed to bring the different research fields together. SAINT was the “Science And INnovation of Thunderstorms” Marie Skłodowska-Curie Innovative Training Network of the European Union Horizon 2020 program. From 2017 to 2021, 15 PhD students observed lightning processes from satellites and ground, developed models and conducted laboratory experiments. The project bridged between geophysical research, plasma technology and relevant industries. The paper presents a summary of the findings of the SAINT network collaboration.

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来源期刊
Surveys in Geophysics
Surveys in Geophysics 地学-地球化学与地球物理
CiteScore
10.00
自引率
10.90%
发文量
64
审稿时长
4.5 months
期刊介绍: Surveys in Geophysics publishes refereed review articles on the physical, chemical and biological processes occurring within the Earth, on its surface, in its atmosphere and in the near-Earth space environment, including relations with other bodies in the solar system. Observations, their interpretation, theory and modelling are covered in papers dealing with any of the Earth and space sciences.
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