Improved short-term variability in the Thermosphere-Ionosphere-Mesosphere-Electrodynamics General Circulation Model

We report on a new source of tidal variability in the National Center for Atmospheric Research thermosphere-ionosphere-mesosphere-electrodynamics general circulation model (TIME-GCM). Lower boundary forcing of the TIME-GCM for a simulation of November–December 2009 based on 3-hourly Modern-Era Retrospective Analysis for Research and Application (MERRA) reanalysis data includes day-to-day variations in both diurnal and semidiurnal tides of tropospheric origin. Comparison with TIME-GCM results from a heretofore standard simulation that includes climatological tropospheric tides from the global-scale wave model reveal evidence of the impacts of MERRA forcing throughout the model domain, including measurable tidal variability in the TIME-GCM upper thermosphere. Additional comparisons with measurements made by the Gravity field and steady-state Ocean Circulation Explorer satellite show improved TIME-GCM capability to capture day-to-day variations in thermospheric density for the November–December 2009 period with the new MERRA lower boundary forcing.

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Author Hausler, K.
Hagan, Maura
Baumgaertner, Andreas
Maute, Astrid
Lu, Gang
Doornbos, E.
Bruinsma, S.
Forbes, J.
Gasperini, F.
Publisher UCAR/NCAR - Library
Publication Date 2014-08-01T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2025-07-12T00:06:40.200280
Metadata Record Identifier edu.ucar.opensky::articles:14362
Metadata Language eng; USA
Suggested Citation Hausler, K., Hagan, Maura, Baumgaertner, Andreas, Maute, Astrid, Lu, Gang, Doornbos, E., Bruinsma, S., Forbes, J., Gasperini, F.. (2014). Improved short-term variability in the Thermosphere-Ionosphere-Mesosphere-Electrodynamics General Circulation Model. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7bp03sp. Accessed 10 August 2025.

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