HR: 08:40h
AN: SA41A-03 INVITED [Abstracts]
TI: Ionospheric Modeling: Coupling to the Inner and Outer Magnetosphere
AU: * Huba, J D
EM: huba@ppd.nrl.navy.mil
AF: Naval Research Laboratory, Plasma Physics Division
, Washington, DC 20375, United States
AB:
The Naval Research Laboratory has developed a comprehensive 3D model of the earth's ionosphere: SAMI3
(Sami3 is Also
a Model of the Ionosphere).
SAMI3 models the plasma and chemical evolution of seven ion species
(H+, He+, N+, O+, N2+, NO2+ and O2+).
The complete ion
temperature equation is solved for three ion species
(H+, He+ and O+) as well as the electron
temperature equation. Ion inertia is included in the ion momentum
equation for motion along the geomagnetic field. In addition,
the E × B drift motion of the plasma is included for
both zonal electric fields (vertical drifts) and meridional
electric fields (zonal drifts). The neutral species are specified
using the empirical NRLMSISE00 model that is based on MSIS86
and the HWM model. SAMI3 uses a nonorthogonal, nonuniform, fixed grid.
The code is fully parallelized using the Message Passing
Interface (MPI) method.
The code has been recently upgraded to provide global
coverage of the ionosphere (± 89° magnetic latitude)
within the context of a single model. The code has been
self-consistently electrodynamically coupled to the
Rice Convection Model (RCM) and partially coupled to
the LFM magnetosphere model. We report results of ionospheric
dynamics associated with electrodynamic forcing by
the inner and outer magnetosphere, e.g., the convection of
plasma across the polar cap, the impact of
storm-time penetration electric fields on the low- to mid-latitude
ionosphere.
Research supported by ONR.
DE: 2427 Ionosphere/atmosphere interactions (0335)
DE: 2435 Ionospheric disturbances
DE: 2437 Ionospheric dynamics
DE: 2736 Magnetosphere/ionosphere interactions (2431)
DE: 3369 Thermospheric dynamics (0358)
SC: SPA-Aeronomy [SA]
MN: 2007 Joint Assembly