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首页> 外文期刊>Solar physics >Low-Frequency Type-II Radio Detections and Coronagraph Data Employed to Describe and Forecast the Propagation of 71 CMEs/Shocks
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Low-Frequency Type-II Radio Detections and Coronagraph Data Employed to Describe and Forecast the Propagation of 71 CMEs/Shocks

机译:低频II型无线电探测和日冕仪数据用于描述和预测71个CME /电击的传播

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摘要

Motivated by improving predictions of arrival times at Earth of shocks driven by coronal mass ejections (CMEs), we have analyzed 71 Earth-directed events in different stages of their propagation. The study is primarily based on approximated locations of interplanetary (IP) shocks derived from Type-II radio emissions detected by the Wind/WAVES experiment during 1997 -aEuro parts per thousand 2007. Distance-time diagrams resulting from the combination of white-light corona, IP Type-II radio, and in-situ data lead to the formulation of descriptive profiles of each CME's journey toward Earth. Furthermore, two different methods for tracking and predicting the location of CME-driven IP shocks are presented. The linear method, solely based on Wind/WAVES data, arises after key modifications to a pre-existing technique that linearly projects the drifting low-frequency Type-II emissions to 1 AU. This upgraded method improves forecasts of shock-arrival times by almost 50 %. The second predictive method is proposed on the basis of information derived from the descriptive profiles and relies on a single CME height-time point and on low-frequency Type-II radio emissions to obtain an approximate value of the shock arrival time at Earth. In addition, we discuss results on CME-radio emission associations, characteristics of IP propagation, and the relative success of the forecasting methods.
机译:通过改进对由日冕物质抛射(CME)驱动的冲击到达地球的时间的预测,我们分析了71个与地球有关的事件在其传播的不同阶段。该研究主要基于风/ WAVES实验在1997年检测到的II型无线电发射产生的行星际(IP)冲击的近似位置-2007年每千欧元的分量。白光日冕结合产生的距离-时间图,IP Type-II无线电和原位数据导致形成每个CME到地球旅程的描述性概况。此外,提出了两种不同的方法来跟踪和预测CME驱动的IP冲击的位置。仅基于Wind / WAVES数据的线性方法是在对现有技术进行关键修改之后提出的,该技术将漂移的低频Type-II排放线性地投影到1 AU。这种升级的方法将电击到达时间的预测提高了近50%。第二种预测方法是基于从描述性轮廓中得出的信息而提出的,它依赖于单个CME高度时间点和低频II型无线电发射,以获得地球震动到达时间的近似值。此外,我们讨论了有关CME-无线电发射关联,IP传播特性以及预测方法相对成功的结果。

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