首页> 外文学位 >A case study of the June 4--5, 1991 magnetic storm using the Rice Convection Model.
【24h】

A case study of the June 4--5, 1991 magnetic storm using the Rice Convection Model.

机译:使用莱斯对流模型对1991年6月4日至5日的磁暴的案例研究。

获取原文
获取原文并翻译 | 示例

摘要

This dissertation presents one of the most comprehensive computer simulations to date of a geomagnetic storm. During the geomagnetic storm of June 4–5, 1991, five spacecraft took measurements of conditions within the inner magnetosphere, including measurements of the electric and magnetic fields and the particle distribution at several different locations. These data are used to test the theoretical understanding of magnetospheric physics by comparisons to the Rice Convection Model (RCM). The RCM is a first-principles model of the inner magnetosphere that calculates the movement of magnetospheric particles, the currents into and out of the magnetosphere, and the magnetospheric electric field patterns. Furthermore, these comparisons provide answers to some of the pressing questions in magnetospheric physics: How strong does the shielding electric field become during a magnetic storm? Can a self-consistently calculated electric field inject plasma sheet particles to within 3 Earth radii of the Earth? How much of the increase in the ring current is due to the injection of plasma sheet particles and how much is due to the energization of pre-existing particles? The comparisons between the RCM electric field results and the corresponding measurements show very good agreement between the observations and the models, and indicate that a fairly strong electric field develops during the storm. Furthermore, comparisons of RCM calculated particle fluxes and the observations indicate that a self-consistently calculated electric field is able to inject plasma sheet particles deep into the inner magnetosphere, and that this injection is the dominant cause of the increased ring current.
机译:本文提出了迄今为止最全面的地磁风暴计算机模拟方法之一。在1991年6月4日至5日的地磁风暴中,五艘航天器对内磁层内部的条件进行了测量,包括对电场和磁场以及在几个不同位置的粒子分布的测量。通过与莱斯对流模型(RCM)进行比较,这些数据可用于测试对磁层物理学的理论理解。 RCM是内部磁层的第一性原理模型,用于计算磁层粒子的运动,流入和流出磁层的电流以及磁层电场模式。此外,这些比较为磁层物理学中的一些紧迫问题提供了答案:在电磁风暴期间屏蔽电场变得有多强?自洽计算出的电场能否将等离子薄片粒子注入地球的3个地球半径之内?环电流增加的多少归因于等离子片颗粒的注入,多少归因于预先存在的颗粒的通电? RCM电场结果与相应测量值之间的比较表明,观测值与模型之间具有很好的一致性,并表明在暴风雨期间会形成相当强的电场。此外,RCM计算出的粒子通量与观测值的比较表明,自洽计算出的电场能够将等离子片状粒子注入内部磁层深处,并且这种注入是环电流增加的主要原因。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号