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ISCS 2003 Symposium 'Solar Variability as an Input to the Earth's Environment, Date: 2003/06/23 - 2003/06/28, Location: Slovakia

Publication date: 2003-01-01
Volume: 535 Pages: 603 - 612
ISSN: 92-9092-845-X
Publisher: European Space Agency

Proceedings ISCS 2003 Symposium 'Solar Variability as an input to the earth's environment

Author:

Poedts, Stefaan
van der Holst, B ; Chattopadhyay, I ; Banerjee, D ; Van Lier, T ; Keppens, Rony ; Lomnica, Tatranska

Keywords:

Science & Technology, Physical Sciences, Astronomy & Astrophysics, CORONAL MASS EJECTION, STELLAR WINDS, 3-DIMENSIONAL PROPAGATION, MHD SIMULATION, MODEL, FLOW, STREAMER, MOMENTUM, FRONTS, EVENT

Abstract:

The shocks in the solar corona and interplanetary (IP) space caused by fast Coronal Mass Ejections (CMEs) are simulated numerically and their structure and evolution is studied in the framework of magnetohydrodynamics (MHD). Due to the presence of three characteristic velocities and the anisotropy induced by the magnetic field, CME shocks generated in the lower corona can have a complex structure including secondary shock fronts, over-compressive and compound shocks, etc. The evolution of these CME shocks is followed during their propagation through the solar wind and, in particular, though the critical points in the wind. Particular attention is given to complex IP events involving two CME shocks colliding to each other, as often observed. The CME shocks are important for 'space weather' because they can easily be observed in radio wavelengths. This makes it possible to track the position of the CMEs/magnetic clouds and, hence, to follow their propagation through the corona.