We present a study of the semidiurnal solar tide (S2) during the fall and spring transition times in the Northern Hemisphere. The tides have been obtained from wind measurements provided by three meteor radars located at Andenes (69° N, 16° E), Juliusruh (54° N, 13° E) and Tavistock (42° N, 81° W). During the fall, S2 is characterized by a sudden and pronounced decrease occurring every year and at all height levels. The spring transition also shows a decrease in S2, but not sudden and that ascends from lower to higher altitudes during an interval of ∼ 15 to 40 days. To assess contributions of different semidiurnal tidal components, we have examined a 20-year free-run simulation by the Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
The 11th Symposium on Polar Science/Interdisciplinary sessions: [IW] Whole atmosphere, Thu. 3 Dec
The longitudinal structure of the day-to-day variations of semidiurnal tide amplitudes is analysed b...
Mean winds and tidal signatures in the mesosphere and lower thermosphere (MLT) region are derived fr...
We present a study of the semidiurnal solar tide (S2) during the fall and spring transition times in...
We present a study of the semidiurnal solar tide (S2) during the fall and spring transition times i...
Using meteor wind data from the Super Dual Auroral Radar Network (SuperDARN) in the Northern Hemisph...
Using meteor wind data from the Super Dual Auroral Radar Network (SuperDARN) in the Northern Hemisph...
The dynamics of the mesosphere and lower thermosphere (80-110 km) are investigated using data for 19...
The dynamics of the mesosphere and lower thermosphere (80-110 km) are investigated using data for 19...
The dynamics of the mesosphere and lower thermosphere (80-110 km) are investigated using data for 19...
© 2020 COSPAR We present results on temporal and longitudinal modulations of semidiurnal tide amplit...
To investigate possible couplings between planetary waves and the semidiurnal tide (SDT), this work...
This study uses hourly meteor wind measurements from a longitudinal array of 10 high-latitude SuperD...
Abstract. Mean winds and tides in the northern polar Meso-sphere and Lower Thermosphere (MLT) have b...
We present the migrating tidal winds decomposed jointly from multiple meteor radars in four longitud...
The 11th Symposium on Polar Science/Interdisciplinary sessions: [IW] Whole atmosphere, Thu. 3 Dec
The longitudinal structure of the day-to-day variations of semidiurnal tide amplitudes is analysed b...
Mean winds and tidal signatures in the mesosphere and lower thermosphere (MLT) region are derived fr...
We present a study of the semidiurnal solar tide (S2) during the fall and spring transition times in...
We present a study of the semidiurnal solar tide (S2) during the fall and spring transition times i...
Using meteor wind data from the Super Dual Auroral Radar Network (SuperDARN) in the Northern Hemisph...
Using meteor wind data from the Super Dual Auroral Radar Network (SuperDARN) in the Northern Hemisph...
The dynamics of the mesosphere and lower thermosphere (80-110 km) are investigated using data for 19...
The dynamics of the mesosphere and lower thermosphere (80-110 km) are investigated using data for 19...
The dynamics of the mesosphere and lower thermosphere (80-110 km) are investigated using data for 19...
© 2020 COSPAR We present results on temporal and longitudinal modulations of semidiurnal tide amplit...
To investigate possible couplings between planetary waves and the semidiurnal tide (SDT), this work...
This study uses hourly meteor wind measurements from a longitudinal array of 10 high-latitude SuperD...
Abstract. Mean winds and tides in the northern polar Meso-sphere and Lower Thermosphere (MLT) have b...
We present the migrating tidal winds decomposed jointly from multiple meteor radars in four longitud...
The 11th Symposium on Polar Science/Interdisciplinary sessions: [IW] Whole atmosphere, Thu. 3 Dec
The longitudinal structure of the day-to-day variations of semidiurnal tide amplitudes is analysed b...
Mean winds and tidal signatures in the mesosphere and lower thermosphere (MLT) region are derived fr...