Equatorial ionospheric vertical plasma drift model over the Brazilian region

Модель вертикального плазменного дрейфа в экваториальной ионосфере над территорией Бразилии
M. A. Abdu, E. R. de Paula, I. S. Batista, R. T. de Medeiros, J. R. Souza, G. J. Bailey
1996-05-01

Brazilian longitude sectorSheffield University plasmasphere-ionosphere model (SUPIM)equatorial ionospheric vertical plasma driftionosonde drift model (IDM)
Comparison between equatorial inospheric F region vertical plasma drift from satellite measurements [ Fejer et al. , 1995], for the Brazilian longitude sector, and the drifts derived from ionosonde measurements around sunset shows significant differences on the prereversal peak behavior during solstices of high solar activity periods. Using ionosonde measurements around sunset and satellite measurements at other local times, we constructed an ionospheric vertical plasma drift model that is representative of the equatorial region over the Brazilian longitudes, where the magnetic declination is around −20°. The so derived drift model, here called IDM (ionosonde drift model), is used as an input to the Sheffield University plasmasphere‐ionosphere model (SUPIM). It is shown that the F layer heights given by SUPIM with IDM are in good agreement with ionosonde measurements over the Brazilian longitudes and that IDM better simulates the F layer heights than the averaged drifts given by the satellite drift model [ Fejer et al. , 1995].
1
An ionospheric vertical plasma drift model (IDM) was constructed for the Brazilian equatorial region by combining ionosonde sunset measurements with satellite measurements at other local times.
2
IDM simulates F layer heights better than the averaged satellite drift model of Fejer et al. (1995) for the Brazilian longitude sector.
3
Satellite-derived equatorial F region vertical plasma drifts and ionosonde-derived drifts around sunset show significant differences in prereversal peak behavior during solstices of high solar activity for the Brazilian longitude sector.
4
Using IDM as input to the SUPIM model yields F layer heights that are in good agreement with ionosonde measurements over Brazilian longitudes (magnetic declination ≈ −20°).

Equatorial ionospheric F-region vertical plasma drift over the Brazilian longitude sector

Development and validation of an ionosonde-based vertical plasma drift model (IDM) and its impact on simulated F-layer heights (comparison with satellite-derived drifts and ionosonde measurements)

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1996-05-01
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M. A. Abdu
E. R. de Paula
I. S. Batista
R. T. de Medeiros
J. R. Souza
G. J. Bailey
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