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Sensitivity study for ICON tidal analysis.

Chihoko Y Cullens1, Thomas J Immel1, Colin C Triplett1

  • 1Space Sciences Laboratory, University of California Berkeley, Berkeley, USA.

Progress in Earth and Planetary Science
|July 7, 2020
PubMed
Summary
This summary is machine-generated.

Understanding atmospheric tides, crucial for planetary atmospheres, is enhanced by analyzing space-based wind and temperature data. This study optimizes data retrieval for missions like ICON, improving atmospheric dynamics research.

Keywords:
Atmospheric tidesICON

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Area of Science:

  • Atmospheric science
  • Aeronomy
  • Planetary science

Background:

  • Middle and upper atmosphere properties are retrievable using interferometric and photometric methods.
  • Atomic and molecular emissions provide temperature and bulk velocity data from ground and space observations.
  • Atmospheric tides, ubiquitous in planetary atmospheres, require quantifying atmospheric motion and temperature.

Purpose of the Study:

  • To explore how various combinations of space-based wind and temperature measurements impact the retrieval of atmospheric tides.
  • To develop a tool for designing optimal mission concepts for retrieving atmospheric tides using remote-sensing observations.
  • To investigate scenarios with limited data and the effects of wave spectrum changes on tidal spectrum retrieval.

Main Methods:

  • Utilizing a tidally forced atmospheric circulation model.
  • Employing an empirically based emissions reference.
  • Simulating low-Earth orbit satellite observation geometry based on the ICON mission design.

Main Results:

  • Demonstrated the impact of different data combinations on atmospheric tide retrieval.
  • Investigated scenarios of limited data availability and its effect on tidal retrieval.
  • Assessed the influence of rapid changes in the total wave spectrum on the correct tidal spectrum.

Conclusions:

  • The study provides a necessary tool for designing optimal mission concepts for atmospheric tide retrieval.
  • The approach can inform the design of future missions, including NASA's DYNAMIC mission.
  • Optimizing data acquisition and analysis is key to accurately identifying atmospheric tides.