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A Major Solar Eruptive Event in July 2012: Defining Extreme Space Weather ScenariosA key goal for space weather studies is to define severe and extreme conditions that might plausibly afflict human technology. On 23 July 2012, solar active region 1520 (approx. 141 deg W heliographic longitude) gave rise to a powerful coronal mass ejection (CME) with an initial speed that was determined to be 2500+/-500 km/s. The eruption was directed away from Earth toward 125 deg W longitude. STEREO-A sensors detected the CME arrival only about 19 h later and made in situ measurements of the solar wind and interplanetary magnetic field. In this paper, we address the question of what would have happened if this powerful interplanetary event had been Earthward directed. Using a well-proven geomagnetic storm forecast model, we find that the 23-24 July event would certainly have produced a geomagnetic storm that was comparable to the largest events of the twentieth century (Dst approx. - 500 nT). Using plausible assumptions about seasonal and time-of-day orientation of the Earth's magnetic dipole, the most extreme modeled value of storm-time disturbance would have been Dst= - 1182 nT. This is considerably larger than estimates for the famous Carrington storm of 1859. This finding has far reaching implications because it demonstrates that extreme space weather conditions such as those during March of 1989 or September of 1859 can happen even during a modest solar activity cycle such as the one presently underway. We argue that this extreme event should immediately be employed by the space weather community to model severe space weather effects on technological systems such as the electric power grid.
Document ID
20180003269
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Baker, D. N.
(Colorado Univ. Boulder, CO, United States)
Li, X.
(Colorado Univ. Boulder, CO, United States)
Pulkkinen, A.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Ngwira, C. M.
(Catholic Univ. of America Washington, DC, United States)
Mays, M. L.
(Catholic Univ. of America Washington, DC, United States)
Galvin, A. B.
(New Hampshire Univ. Durham, NH, United States)
Simunac, Kristin
(New Hampshire Univ. Durham, NH, United States)
Date Acquired
June 4, 2018
Publication Date
September 19, 2013
Publication Information
Publication: SPACE WEATHER
Publisher: AGU
Volume: 11
Issue: 10
ISSN: 1539-4956
e-ISSN: 1542-7390
Subject Category
Solar Physics
Report/Patent Number
GSFC-E-DAA-TN23099
ISSN: 1539-4956
Report Number: GSFC-E-DAA-TN23099
E-ISSN: 1542-7390
Funding Number(s)
CONTRACT_GRANT: NNG11PL10A
Distribution Limits
Public
Copyright
Other
Keywords
solar longitude
SPACE WEATHER
geomagnetism

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