HR: 1340h
AN: SH33B-0372 [Abstracts]
TI: The Role of Heat Flux in Governing the Thermal Behavior of Alpha Particles in the Fast Solar Wind
AU: * Allen, L A
EM: lallen@cga.uscg.mil
AF: U.S. Coast Guard Academy, Department of Science,
27 Mohegan Ave
, New London, CT 06340
United States
AU: Li, X
EM: xxl@aber.ac.uk
AF: University of Wales at Aberystwyth, Department of Mathematical Sciences,
Penglais Hill
, Aberystwyth, SY23 3BZ
United Kingdom
AB:
We present a 16-moment, three-fluid description of the solar wind consisting of electrons,
protons, and alpha particles. We assume gyrotropic flow (transport across the magnetic
field is neglected) which reduces the 16-moment set of transport equations to a six-moment
set yielding the density, velocity, temperatures parallel and perpendicular to the magnetic
field, and parallel heat conductive fluxes from the parallel and perpendicular directions
for each particles species. The model incorporates the effects of Coulomb collisions.
It allows for non-radial divergence of the magnetic field and heating
and momentum addition to the particles. We investigate the
influence of the heat conductive flux in shaping the temperature
anisotropy.
DE: 7509 Corona
SC: SPA-Solar and Heliospheric Physics [SH]
MN: Fall Meeting 2005