HR: 1340h
AN: SM43A-1146 [Abstracts]
TI: Sensitivity Tests of the Temerin-Li Dst Model
AU: * Halford, A J
EM: Alexa.Halford@lasp.colorado.edu
AF: University of Colorado Boulder/LASP, 1234 Innovation Drive, Boulder, CO 80303
United States
AU: Weigel, R
EM: Robert.weigel@lasp.colorado.edu
AF: University of Colorado Boulder/LASP, 1234 Innovation Drive, Boulder, CO 80303
United States
AU: Baker, D
EM: Daniel.Baker@lasp.colorado.edu
AF: University of Colorado Boulder/LASP, 1234 Innovation Drive, Boulder, CO 80303
United States
AB:
The Dst historically has been used as a measure of the disturbance of the magnetosphere and an indicator of when a
geomagnetic storm is occuring. The Temerin-Li [2002] (TL02) model is a semi-empirical Dst model which was trained on five
years (1995 - 1999) of data. The TL02 model is the most successful Dst predictor in terms of prediction efficiency, with a
reported prediction efficiency of greater then .90. The inputs into this model are the solar wind parameters, solar wind
velocity, interplanetary magnetic field, and solar wind density. This model is based on the Burton et al. model, but has many
parameters whose physical relavance are not well understood. To better understand the physical relevance of the empirical
parameters, we use parameter sensitivity, impulse response, and driver sensitivity analysis. These techniques are used along
with seasonal and diurnal analysis of the prediction error to extract a physical understanding of the most influential
components of the model. By holding the input parameters constant and comparing this output and the output from sending
pulses of delta t = 1 hour at regular intervals over a period of a year to the actual Dst, we can observe the diurnal and
seasonal variations due to the individual parameters.
DE: 2730 Magnetosphere--inner
DE: 2778 Ring current
DE: 2784 Solar wind/magnetosphere interactions
DE: 2788 Storms and substorms
SC: SPA-Magnetospheric Physics [SM]
MN: 2004 AGU Fall Meeting