在2023年在Aragats登记的极端雷暴地面增强数据集
A Chilingarian1, T Karapetyan1, B Sargsyan1
1Alikhanyan National Laboratory (Yerevan Physics Institute), Yerevan 0036, Armenia.
Data in brief
|June 17, 2024
概括
对大气电场和宇宙射线流的研究对于高能大气物理学至关重要. 监测这些现象有助于确保在高空作业期间的安全.
科学领域:
- 高能大气物理 高能大气物理
- 大气中的电力大气中的电力.
- 宇宙射线物理学 宇宙射线物理学
背景情况:
- 了解大气电场 (AEF) 和宇宙射线流的相互联系对于推进高能大气物理学至关重要.
- 雷云电荷结构和内部电子加速器需要经过验证的模型,通常通过同时进行大气测量来增强.
研究的目的:
- 研究大气电场与雷暴期间的宇宙射线流之间的关系.
- 验证雷云电荷结构模型和内部电子加速器.
- 评估雷暴地面增强 (TGE) 期间高强度电场带来的风险.
主要方法:
- 同时测量粒子流,电场,天气条件和雷电位置在Mt. 阿尔加特人. 阿尔加特人.
- 为高强度电场开发和使用简单,有效的监测设备.
- 对孟德利数据集的分析,包括雷暴活动期间的各种参数.
主要成果:
- 在2023年的观测显示,在高铁时,在低海拔地区的电场超过2.0kV/cm.
- 这些高强度电场对火箭和飞机构成潜在的危险.
- 综合监测方法有助于验证大气模型.
结论:
- 综合大气研究对于确保高空作业的安全至关重要.
- 有效的监控设备可以减轻与危险的大气电场相关的风险.
- 综合数据集的高级相关性分析可以揭示复杂的大气现象关系.
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