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Flare loop radiative hydrodynamics. I - Basic methodsThe study presented here has two goals. The first is to examine the role of energy transport mechanisms in flare dynamics, for instance, thermal cone conduction in the corona and radiative transfer in the chromosphere. The second is to provide diagnostics of flare energization processes by predicting the evolutionary behavior of concurrent emissions from all regions of the flaring atmosphere. To attain these ends, a numerical method is developed for the simultaneous solution of thy continuity, momentum, and energy equations; the time-dependent atomic rate equations describing ionization and excitation; and the radiative transfer equations. With the physical model and computational methods used here, all components of the plasma move as a single fluid and in the initial studies are assumed to have a common kinetic temperature. The plasma is constrained to move in one dimension along the axis of a loop of nonuniform cross section, the geometry of which is defined by a sufficiently strong magnetic field.
Document ID
19830039927
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Mcclymont, A. N.
(California Univ., San Diego La Jolla, CA, United States)
Canfield, R. C.
(California, University La Jolla, CA, United States)
Date Acquired
August 11, 2013
Publication Date
February 1, 1983
Subject Category
Solar Physics
Accession Number
83A21145
Funding Number(s)
CONTRACT_GRANT: NSF ATM-81-12866
CONTRACT_GRANT: AF-AFOSR-76-3071
CONTRACT_GRANT: NSG-7406
Distribution Limits
Public
Copyright
Other

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