The Response of Middle Thermosphere (∼160 km) Composition to the November 20 and 21, 2003 Superstorm

Tingting Yu, Wenbin Wang, Zhipeng Ren, Xuguang Cai, Xinan Yue, Maosheng He

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31 Scopus citations

Abstract

TIMED/GUVI limb measurements and first-principles simulations from the Thermosphere Ionosphere Electrodynamics Global Circulation Model (TIEGCM) are used to investigate thermospheric atomic oxygen (O) and molecular nitrogen (N2) responses in the middle thermosphere on a constant pressure surface (∼160 km) to the November 20 and 21, 2003 superstorm. The consistency between GUVI observations and TIEGCM simulated composition changes allows us to utilize TIEGCM outputs to investigate the storm-time behaviors of O and N2 systematically. Diagnostic analysis shows that horizontal and vertical advection are the two main processes that determine the storm-induced perturbations in the middle thermosphere. Molecular diffusion has a relatively smaller magnitude than the two advection processes, acting to compensate for the changes caused by the transport partly. Contributions from chemistry and eddy diffusion are negligible. During the storm initial and main phases, composition variations at high latitudes are determined by both horizontal and vertical advection. At middle-low latitudes, horizontal advection is the main driver for the composition changes where O mass mixing ratio (Formula presented.) decreases (N2 mass mixing ratio (Formula presented.) increases); whereas horizontal and vertical advection combined to dominate the changes in the regions where (Formula presented.) increases ((Formula presented.) decreases). Over the entire storm period, horizontal advection plays a significant role in transporting high-latitude composition perturbations globally. Our results also demonstrate that storm-time temperature changes are not the direct cause of the composition perturbations on constant pressure surfaces.

Original languageEnglish
Article numbere2021JA029449
JournalJournal of Geophysical Research: Space Physics
Volume126
Issue number10
DOIs
StatePublished - Oct 2021

Keywords

  • GUVI limb observations
  • TIEGCM
  • atomic oxygen
  • middle thermosphere
  • molecular nitrogen
  • storm-time perturbations

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