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Evaluation of the Empirical Scaling Factor of Joule Heating Rates in TIE-GCM With EISCAT Measurements

Günzkofer, Florian Ludwig and Liu, Huixin and Stober, Gunter and Pokhotelov, Dimitry and Borries, Claudia (2024) Evaluation of the Empirical Scaling Factor of Joule Heating Rates in TIE-GCM With EISCAT Measurements. Earth and Space Science. American Geophysical Union (AGU). doi: 10.1029/2023EA003447. ISSN 2333-5084.

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Abstract

Joule heating is one of the main energy inputs into the thermosphere‐ionosphere system. Precise modeling of this process is essential for any space weather application. Existing thermosphere‐ionosphere models tend to underestimate the actual Joule heating rate quite significantly. The Thermosphere‐Ionosphere‐Electrodynamics General‐Circulation‐Model applies an empirical scaling factor of 1.5 for compensation. We calculate vertical profiles of Joule heating rates from approximately 2,220 hr of measurements with the EISCAT incoherent scatter radar and the corresponding model runs. We investigate model runs with the plasma convection driven by both the Heelis and the Weimer model. The required scaling of the Joule heating profiles is determined with respect to the Kp index, the Kan‐Lee merging electric field EKL, and the magnetic local time. Though the default scaling factor of 1.5 appears to be adequate on average, we find that the required scaling varies strongly with all three parameters ranging from 0.46 to 20 at geomagnetically disturbed and quiet times, respectively. Furthermore, the required scaling is significantly different in runs driven by the Heelis and Weimer model. Adjusting the scaling factor with respect to the Kp index, EKL, the magnetic local time, and the choice of convection model would reduce the difference between Joule heating rates calculated from measurement and model plasma parameters

Item URL in elib:https://elib.dlr.de/203495/
Document Type:Article
Title:Evaluation of the Empirical Scaling Factor of Joule Heating Rates in TIE-GCM With EISCAT Measurements
Authors:
AuthorsInstitution or Email of AuthorsAuthor's ORCID iDORCID Put Code
Günzkofer, Florian Ludwigflorian.guenzkofer (at) dlr.dehttps://orcid.org/0000-0001-6568-2995UNSPECIFIED
Liu, Huixinliu.huixin.295 (at) m.kyushu-u.ac.jphttps://orcid.org/0000-0001-7073-4366UNSPECIFIED
Stober, GunterInstitute of Applied Physics & Oeschger Center for Climate Change Research, Microwave Physics, University of Bern, Bern, Switzerlandhttps://orcid.org/0000-0002-7909-6345UNSPECIFIED
Pokhotelov, DimitryDimitry.Pokhotelov (at) gmail.comhttps://orcid.org/0000-0002-3712-0597UNSPECIFIED
Borries, Claudiaclaudia.borries (at) dlr.dehttps://orcid.org/0000-0001-9948-3353UNSPECIFIED
Date:27 March 2024
Journal or Publication Title:Earth and Space Science
Refereed publication:Yes
Open Access:Yes
Gold Open Access:Yes
In SCOPUS:Yes
In ISI Web of Science:Yes
DOI:10.1029/2023EA003447
Publisher:American Geophysical Union (AGU)
ISSN:2333-5084
Status:Published
Keywords:Joule Heating, Incoherent Scatter Radar, Thermosphere-Ionosphere Model
HGF - Research field:Aeronautics, Space and Transport
HGF - Program:Space
HGF - Program Themes:Earth Observation
DLR - Research area:Raumfahrt
DLR - Program:R EO - Earth Observation
DLR - Research theme (Project):R - Solar-Terrestrial coupling processes, R - Solar-Terrestrial Physics SO
Location: Neustrelitz
Institutes and Institutions:Institute for Solar-Terrestrial Physics > Solar-Terrestrial Coupling Processes
Deposited By: Günzkofer, Florian Ludwig
Deposited On:17 Sep 2024 09:55
Last Modified:19 Sep 2024 09:56

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