Forecasting the space weather impact: The COMESEP project

Forecasting the space weather impact: The COMESEP project
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DOI:
10.1063/1.4768760
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发表时间:
2012-11
期刊:
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影响因子:
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通讯作者:
N. Crosby;A. Veronig;E. Robbrecht;B. Vršnak;S. Vennerstrom;O. Malandraki;S. Dalla;L. Rodriguez;N. Srivastava;M. Hesse;D. Odstrcil
N. Crosby;A. Veronig;E. Robbrecht;B. Vršnak;S. Vennerstrom;O. Malandraki;S. Dalla;L. Rodriguez;N. Srivastava;M. Hesse;D. Odstrcil
中科院分区:
其他
文献类型:
--
作者:
N. Crosby;A. Veronig;E. Robbrecht;B. Vršnak;S. Vennerstrom;O. Malandraki;S. Dalla;L. Rodriguez;N. Srivastava;M. Hesse;D. Odstrcil

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FP7 日冕物质抛射和太阳高能粒子 (COMESEP) 项目正在开发预测地磁风暴和太阳高能粒子 (SEP) 辐射风暴的工具。通过对历史数据的分析,辅以第 23 太阳周期的广泛数据覆盖,导致磁暴和 SEP 事件的关键因素以及导致误报的因素正在被识别。为了增强我们对日冕物质抛射 (CME) 的 3D 运动学和行星际传播的理解,我们正在研究日冕物质抛射 (CME) 的结构、传播和演化。与此同时,标准必要专利的来源和传播正在接受检查和建模。 COMESEP 是一项独特的交叉合作项目,弥合了 SEP、CME 和地球效应科学界之间的差距。
The FP7 COronal Mass Ejections and Solar Energetic Particles (COMESEP) project is developing tools for forecasting geomagnetic storms and solar energetic particle (SEP) radiation storms. By analysis of historical data, complemented by the extensive data coverage of solar cycle 23, the key ingredients that lead to magnetic storm and SEP events and the factors that are responsible for false alarms are being identified. To enhance our understanding of the 3-D kinematics and interplanetary propagation of coronal mass ejections (CMEs), the structure, propagation and evolution of CMEs are being investigated. In parallel, the sources and propagation of SEPs are being examined and modelled. COMESEP is a unique cross-collaboration effort and bridges the gap between the SEP, CME and terrestrial effects scientific communities.