Photoelectron transport and energy balance in the low-latitude ionosphere

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Theoretical studies of ionospheric structure and dynamics require knowledge of the underlying thermal structure of the ionosphere since it affects the chemical reaction rates, recombination rates, and pressure gradients. Measurements of ionospheric temperatures have been made for decades with a vari...

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Detalles Bibliográficos
Autor: Varney, Roger Hale
Formato: tesis doctoral
Fecha de Publicación:2012
Institución:Instituto Geofísico del Perú
Repositorio:IGP-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.igp.gob.pe:20.500.12816/26
Enlace del recurso:http://hdl.handle.net/20.500.12816/26
Nivel de acceso:acceso abierto
Materia:Ionosphere
Atmospheric temperature
Radar
Magnetic field
Energy balance
http://purl.org/pe-repo/ocde/ford#1.05.01
http://purl.org/pe-repo/ocde/ford#2.02.00
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dc.title.es_ES.fl_str_mv Photoelectron transport and energy balance in the low-latitude ionosphere
title Photoelectron transport and energy balance in the low-latitude ionosphere
spellingShingle Photoelectron transport and energy balance in the low-latitude ionosphere
Varney, Roger Hale
Ionosphere
Atmospheric temperature
Radar
Magnetic field
Energy balance
http://purl.org/pe-repo/ocde/ford#1.05.01
http://purl.org/pe-repo/ocde/ford#2.02.00
title_short Photoelectron transport and energy balance in the low-latitude ionosphere
title_full Photoelectron transport and energy balance in the low-latitude ionosphere
title_fullStr Photoelectron transport and energy balance in the low-latitude ionosphere
title_full_unstemmed Photoelectron transport and energy balance in the low-latitude ionosphere
title_sort Photoelectron transport and energy balance in the low-latitude ionosphere
author Varney, Roger Hale
author_facet Varney, Roger Hale
author_role author
dc.contributor.advisor.fl_str_mv Kelley, Michael
dc.contributor.author.fl_str_mv Varney, Roger Hale
dc.subject.es_ES.fl_str_mv Ionosphere
Atmospheric temperature
Radar
Magnetic field
Energy balance
topic Ionosphere
Atmospheric temperature
Radar
Magnetic field
Energy balance
http://purl.org/pe-repo/ocde/ford#1.05.01
http://purl.org/pe-repo/ocde/ford#2.02.00
dc.subject.ocde.es_ES.fl_str_mv http://purl.org/pe-repo/ocde/ford#1.05.01
http://purl.org/pe-repo/ocde/ford#2.02.00
description Theoretical studies of ionospheric structure and dynamics require knowledge of the underlying thermal structure of the ionosphere since it affects the chemical reaction rates, recombination rates, and pressure gradients. Measurements of ionospheric temperatures have been made for decades with a variety of ground- and space-based techniques. This thesis is motivated in particular by the recent improvements in the temperature measurements made by the Jicamarca Radio Observatory (JRO) using the incoherent scatter radar (ISR) technique. Modern ionospheric models all have widely different treatments of ionospheric energetics, and none can produce satisfactory quantitative agreement with the JRO measurements even in quiet conditions. This thesis explores the energy balance calculations in the widely used, open source SAMI2 model in detail, and shows that it is the oversimplification of the treatment of nonlocal heating by photoelectrons in particular which is pre- venting this model from predicting JRO measurements. This thesis presents an extended version of the SAMI2 model, called SAMI2-PE, which includes a newly developed photoelectron transport model. The model uses finite volume methods which guarantee conservation of particles and energy, incorporates the magnetic field geometry and magnetic mirroring effects, and can be extended to any spatial, energy, and pitch-angle resolution. The new model shows promising agreement with the JRO measurements.
publishDate 2012
dc.date.accessioned.none.fl_str_mv 2015-07-24T13:51:21Z
2017-02-27T22:52:05Z
dc.date.available.none.fl_str_mv 2015-07-24T13:51:21Z
2017-02-27T22:52:05Z
dc.date.issued.fl_str_mv 2012
dc.type.es_ES.fl_str_mv info:eu-repo/semantics/doctoralThesis
format doctoralThesis
dc.identifier.citation.es_ES.fl_str_mv Varney, R. H. (2012).==$Photoelectron transport and energy balance in the low-latitude ionosphere$==(Dissertation for the degree of Doctor of Philosophy). Cornell University, United States.
dc.identifier.uri.none.fl_str_mv http://hdl.handle.net/20.500.12816/26
identifier_str_mv Varney, R. H. (2012).==$Photoelectron transport and energy balance in the low-latitude ionosphere$==(Dissertation for the degree of Doctor of Philosophy). Cornell University, United States.
url http://hdl.handle.net/20.500.12816/26
dc.language.iso.es_ES.fl_str_mv eng
language eng
dc.rights.es_ES.fl_str_mv info:eu-repo/semantics/openAccess
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eu_rights_str_mv openAccess
rights_invalid_str_mv https://creativecommons.org/licences/by/4.0/
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dc.publisher.es_ES.fl_str_mv Cornell University
dc.source.none.fl_str_mv reponame:IGP-Institucional
instname:Instituto Geofísico del Perú
instacron:IGP
instname_str Instituto Geofísico del Perú
instacron_str IGP
institution IGP
reponame_str IGP-Institucional
collection IGP-Institucional
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spelling Kelley, MichaelVarney, Roger Hale2015-07-24T13:51:21Z2017-02-27T22:52:05Z2015-07-24T13:51:21Z2017-02-27T22:52:05Z2012Varney, R. H. (2012).==$Photoelectron transport and energy balance in the low-latitude ionosphere$==(Dissertation for the degree of Doctor of Philosophy). Cornell University, United States.http://hdl.handle.net/20.500.12816/26Theoretical studies of ionospheric structure and dynamics require knowledge of the underlying thermal structure of the ionosphere since it affects the chemical reaction rates, recombination rates, and pressure gradients. Measurements of ionospheric temperatures have been made for decades with a variety of ground- and space-based techniques. This thesis is motivated in particular by the recent improvements in the temperature measurements made by the Jicamarca Radio Observatory (JRO) using the incoherent scatter radar (ISR) technique. Modern ionospheric models all have widely different treatments of ionospheric energetics, and none can produce satisfactory quantitative agreement with the JRO measurements even in quiet conditions. This thesis explores the energy balance calculations in the widely used, open source SAMI2 model in detail, and shows that it is the oversimplification of the treatment of nonlocal heating by photoelectrons in particular which is pre- venting this model from predicting JRO measurements. This thesis presents an extended version of the SAMI2 model, called SAMI2-PE, which includes a newly developed photoelectron transport model. The model uses finite volume methods which guarantee conservation of particles and energy, incorporates the magnetic field geometry and magnetic mirroring effects, and can be extended to any spatial, energy, and pitch-angle resolution. 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