电离层-热层空间天气问题

R.W. Schunk, J.J. Sojka
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引用次数: 128

摘要

电离层-热层系统中的天气扰动会对地基和天基系统产生不利影响。由于这种影响和我们的领域已经成熟,现在开发规范和预测模型是合适的,其目的是最终预测天气影响的发生、持续时间和强度。作为新的国家空间天气计划的一部分,雪松社区将关注与空间天气有关的科学问题,本教程/评论是最近雪松年会上发表的教程报告的扩展版本。本教程/回顾简要讨论了天气干扰和特征、天气的原因以及天气建模的现状。讨论的特征和干扰包括等离子体斑块、边界和极光斑点、与太阳一致的极帽弧、行对流涡旋和SAID事件的影响、密度结构的寿命、零星E层和中间层、扩散F和赤道等离子体气泡、地磁风暴和亚风暴、行电离层干扰(TID)、潮汐和从低层大气传播的重力波的影响。本教程/评论仅旨在概述有关电离层-热层天气的一些重要科学问题,重点是电离层。关于热层和磁层天气问题的教程在相关论文中给出。
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Ionosphere-thermosphere space weather issues

Weather disturbances in the ionosphere-thermosphere system can have a detrimental effect on both ground-based and space-based systems. Because of this impact and because our field has matured, it is now appropriate to develop specification and forecast models, with the aim of eventually predicting the occurrence, duration, and intensity of weather effects. As part of the new National Space Weather Program, the CEDAR community will focus on science issues concerning space weather, and this tutorial/review is an expanded version of a tutorial presentation given at the recent CEDAR annual meeting. The tutorial/review provides a brief discussion of weather disturbances and features, the causes of weather, and the status of weather modeling. The features and disturbances discussed include plasma patches, boundary and auroral blobs, sun-aligned polar cap arcs, the effects of traveling convection vortices and SAID events, the lifetime of density structures, sporadic E and intermediate layers, spread F and equatorial plasma bubbles, geomagnetic storms and substorms, traveling ionospheric disturbances (TID's), and the effects of tides and gravity waves propagating from the lower atmosphere. The tutorial/review is only intended to provide an overview of some of the important scientific issues concerning ionospheric-thermospheric weather, with the emphasis on the ionosphere. Tutorials on thermospheric and magnetospheric weather issues are given in companion papers.

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