...
首页> 外文期刊>Space Science Reviews >Mission Oriented Support and Theory (MOST) for MMS-the Goddard Space Flight Center/University of California Los Angeles Interdisciplinary Science Program
【24h】

Mission Oriented Support and Theory (MOST) for MMS-the Goddard Space Flight Center/University of California Los Angeles Interdisciplinary Science Program

机译:MMS的任务导向支持和理论(MOST)-戈达德太空飞行中心/加州大学洛杉矶分校跨学科科学计划

获取原文
获取原文并翻译 | 示例
           

摘要

The MOST IDS team was tasked with focusing on two general areas: The first was to participate with the Fast Plasma Investigation (FPI) team in the development of virtual detectors that model the instrument responses of the MMS FPI sensors. The virtual instruments can be "flown through" both simulation data (from magnetohydrodynamic, hybrid, and kinetic simulations) and Cluster and THEMIS spacecraft data. The goal is to determine signatures of magnetic reconnection expected during the MMS mission. Such signatures can serve as triggers for selection of burst mode downloads. The chapter contributed by the FPI team covers that effort in detail and, therefore, most of that work has not been included here. The second area of emphasis, and the one detailed in this chapter, was to build on past and present knowledge of magnetic reconnection and its physical signatures. Below we describe intensive analyses of Cluster and THEMIS data together with theoretical models and simulations that delineate the plasma signatures that surround sites of reconnection, including the effects of turbulence as well as the detailed kinetic signatures that indicate proximity to reconnection sites. In particular, we point out that particles are energized in several regions, not only at the actual site of reconnection.
机译:MOST IDS团队的任务主要集中在两个方面:第一个是与快速等离子体调查(FPI)团队一起参与虚拟探测器的开发,该探测器对MMS FPI传感器的仪器响应进行建模。虚拟仪器可以“流经”仿真数据(来自磁流体动力学,混合仿真和动力学仿真)以及簇和THEMIS航天器数据。目的是确定在MMS任务期间预期进行的磁重新连接的特征。这样的签名可以用作选择突发模式下载的触发器。 FPI团队撰写的这一章详细介绍了该工作,因此,这里没有包括大部分工作。第二个重点领域,以及本章详细介绍的一个领域,是建立在过去和现在的磁重连及其物理特征知识的基础上的。下面,我们将对Cluster和THEMIS数据进行深入的分析,并结合理论模型和模拟来描述围绕重新连接部位的等离子体特征,包括湍流的影响以及表明靠近重新连接部位的详细动力学特征。特别要指出的是,不仅在重新连接的实际位置上,粒子还在多个区域中通电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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