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Modeling of the coupled magnetospheric and neutral wind dynamosThe solar wind interaction with the earth's magnetosphere generates electric fields and currents that flow from the magnetosphere to the ionosphere at high latitudes. Consequently, the neutral atmosphere is subject to the dissipation and conversion of this electrical energy to thermal and mechanical energy through Joule heating and Lorentz forcing. As a result of the mechanical energy stored within the neutral wind (caused in part by Lorentz--and pressure gradient--forces set up by the magnetospheric flux of electrical energy), electric currents and fields can be generated in the ionosphere through the neutral wind dynamo mechanism. At high latitudes this source of electrical energy has been largely ignored in past studies, owing to the assumed dominance of the solar wind/magnetospheric dynamo as an electrical energy source to the ionosphere. However, other researchers have demonstrated that the available electrical energy provided by the neutral wind is significant at high latitudes, particularly in the midnight sector of the polar cap and in the region of the magnetospheric convection reversal. As a result, the conclusions of a number of broad ranging high-latitude investigations may be modified if the neutral-wind contribution to high-latitude electrodynamics is properly accounted for. These include the following: studies assessing solar wind-magnetospheric coupling by comparing the cross polar cap potential with solar wind parameters; research based on the alignment of particle precipitation with convection or field aligned current boundaries; and synoptic investigations attributing seasonal variations in the observed electric field and current patterns to external sources. These research topics have been initiated by satellite and ground-based observations and have been attributed to magnetospheric causes. However, the contribution of the neutral wind to the high-latitude electric field and current systems and their seasonal and local time dependence has yet to be quantitatively evaluated. In this program, we are evaluating the coupled magnetospheric and neutral wind dynamos at high latitudes under various conditions. In addition to examining the impact of seasonal variations, we are investigating the consequences of the separate dynamos having pure current-source or voltage-source behaviors.
Document ID
19940016064
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Thayer, Jeff P.
(SRI International Corp. Menlo Park, CA, United States)
Date Acquired
September 6, 2013
Publication Date
December 15, 1993
Subject Category
Geophysics
Report/Patent Number
NAS 1.26:194728
NASA-CR-194728
Report Number: NAS 1.26:194728
Report Number: NASA-CR-194728
Accession Number
94N20537
Funding Number(s)
PROJECT: SRI PROJ. 4604
CONTRACT_GRANT: NAGW-3508
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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