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Detection of Migrating and Non-Migrating Atmospheric Tides Derived from ERA5 Temperature Meteorological Analyses
by
Lefebvre, Thomas
, Hauchecorne, Alain
, Khaykin, Sergey
, Keckhut, Philippe
, Meftah, Mustapha
in
Altitude
/ Analysis
/ Atmosphere
/ Atmospheric and Oceanic Physics
/ Atmospheric tides
/ Climate change
/ cubesat
/ Diurnal
/ Environmental monitoring
/ Estimates
/ mesosphere
/ Modes
/ Orbits
/ Physics
/ Radiation
/ Satellite constellations
/ Satellites
/ space
/ Stratosphere
/ temperature
/ Tidal models
/ Tides
/ Water vapor
/ Water vapour
/ Weather forecasting
2023
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Detection of Migrating and Non-Migrating Atmospheric Tides Derived from ERA5 Temperature Meteorological Analyses
by
Lefebvre, Thomas
, Hauchecorne, Alain
, Khaykin, Sergey
, Keckhut, Philippe
, Meftah, Mustapha
in
Altitude
/ Analysis
/ Atmosphere
/ Atmospheric and Oceanic Physics
/ Atmospheric tides
/ Climate change
/ cubesat
/ Diurnal
/ Environmental monitoring
/ Estimates
/ mesosphere
/ Modes
/ Orbits
/ Physics
/ Radiation
/ Satellite constellations
/ Satellites
/ space
/ Stratosphere
/ temperature
/ Tidal models
/ Tides
/ Water vapor
/ Water vapour
/ Weather forecasting
2023
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Detection of Migrating and Non-Migrating Atmospheric Tides Derived from ERA5 Temperature Meteorological Analyses
by
Lefebvre, Thomas
, Hauchecorne, Alain
, Khaykin, Sergey
, Keckhut, Philippe
, Meftah, Mustapha
in
Altitude
/ Analysis
/ Atmosphere
/ Atmospheric and Oceanic Physics
/ Atmospheric tides
/ Climate change
/ cubesat
/ Diurnal
/ Environmental monitoring
/ Estimates
/ mesosphere
/ Modes
/ Orbits
/ Physics
/ Radiation
/ Satellite constellations
/ Satellites
/ space
/ Stratosphere
/ temperature
/ Tidal models
/ Tides
/ Water vapor
/ Water vapour
/ Weather forecasting
2023
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Detection of Migrating and Non-Migrating Atmospheric Tides Derived from ERA5 Temperature Meteorological Analyses
Journal Article
Detection of Migrating and Non-Migrating Atmospheric Tides Derived from ERA5 Temperature Meteorological Analyses
2023
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Overview
To better extract the tides represented in the European meteorological analysis ERA5, an analysis of the histograms of the diurnal and semi-diurnal modes as a function of longitudes was performed. This analysis revealed that modes with different characteristics appeared regionally along a single longitude. Retrieved migrating tides were compared with a tidal model showing global agreement below 60 km and twice the amplitude in meteorological analyses at mid-latitude. Non-migrating tidal modes have been identified along the tropical band. They logically appear above the convective zones, probably due to water vapor excess. Their characteristics are different from migrating components. This preliminary study has shown that it is necessary to develop additional observations allowing for more frequent sampling to retrieve migrating and non-migrating tides that can only be achieved with satellite constellations from space.
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