HR: 0800h
AN: SH51A-0266 [Abstracts]
TI: Three-Dimensional Numerical Studies of the Magnetic Topology and Pre-Eruption Conditions for the
Halloween Storms from 2003: Computational Challenges Posed by Extreme Space Weather Events
AU: * Roussev, I I
EM: iroussev@umich.edu
AF: University of Michigan, 2455 Hayward Street, Ann Arbor, MI 48109-2143
AU: Sokolov, I V
EM: igorsok@umich.edu
AF: University of Michigan, 2455 Hayward Street, Ann Arbor, MI 48109-2143
AU: Gombosi, T I
EM: tamas@umich.edu
AF: University of Michigan, 2455 Hayward Street, Ann Arbor, MI 48109-2143
AB:
The coronal mass ejections (CMEs), and the solar energetic particle (SEP) events associated with them, are of particular
importance for Space Weather since they endanger human life in outer space and pose major hazards for spacecraft in the inner
Solar System. The Halloween Storms from 2003 were the most powerful solar events ever recorded. These storms broke all-time
records for extreme amount of: peak X-ray intensity ($>$X28); CME speed ($\sim$2700km/s); concentration of energetic CMEs in
interplanetary space; concentration of interplanetary radio bursts; SEP flux (33,000pfu); interplanetary CME magnetic field
($\sim$60nT); geo-impact magnetic field (-465nT); and solar wind speed ($\sim$2000km/s). About one third of the total
particle radiation emitted by the Sun in the last decade in the deadly 30-50MeV energy range came from these storms, even
though the solar activity cycle was well past its maximum.
We present preliminary results of a recent numerical investigation of the global magnetic topology and pre-eruption
conditions of the active regions that spawned the extreme CME events from last year. We employed the BATS-R-US code to
perform global, fully compressional, 3-D numerical MHD computations. High quality magnetic data from MDI are used to drive
the MHD simulations. We discuss the obtained numerical results and the computational
challenges faced in modeling CME events of that high magnitude. This study is a prerequisite of a more detailed investigation
of the series of events associated with the Halloween Storms.
DE: 7500 SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY
DE: 7513 Coronal mass ejections
DE: 7524 Magnetic fields
DE: 7835 Magnetic reconnection
DE: 7843 Numerical simulation studies
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2004 AGU Fall Meeting