DAYTIME LIDAR MEASUREMENTS OF TIDAL WINDS IN THE MESOSPHERIC SODIUM LAYER AT URBANA, ILLINOIS.
K. H. Kwon, Daniel C. Senft, Chester S. Gardner, David Voelz, C. F. Sechrist, F. L. Roesler
Abstract
K. H. Kwon, Daniel C. Senft, Chester S. Gardner, David Voelz, C. F. Sechrist, F. L. Roesler
Abstract
For more than 15 years lidar systems have been used to study the chemistry and dynamics of the mesospheric sodium layer. Because the layer is an excellent tracer of atmospheric wave motions, sodium lidar has proven to be particularly useful for studying the influence of gravity waves and tides on mesospheric dynamics. These waves, which originate in the troposphere and stratosphere, propagate through the mesosphere and dissipate their energy near the mesopause making important contributions to the momentum and turbulence budget in this region of the atmosphere. Recently, the sodium lidar was modified for daytime operation so that wave phenomena and chemical effects could be monitored throughout the complete diurnal cycle. The results of continuous 24 hour lidar observations of the sodium layer structure are presented alond with measurement of the semidiurnal tidal winds.
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For more than 15 years lidar systems have been used to study the chemistry and dynamics of the mesospheric sodium layer. Because the layer is an excellent tracer of atmospheric wave motions, sodium lidar has proven to be particularly useful for studying the influence of gravity waves and tides on mesospheric dynamics. These waves, which originate in the troposphere and stratosphere, propagate through the mesosphere and dissipate their energy near the mesopause making important contributions to the momentum and turbulence budget in this region of the atmosphere. Recently, the sodium lidar was modified for daytime operation so that wave phenomena and chemical effects could be monitored throughout the complete diurnal cycle. The results of continuous 24 hour lidar observations of the sodium layer structure are presented alond with measurement of the semidiurnal tidal winds.
Key concepts: Mesopause, Lidar, Daytime, Mesosphere, Atmospheric sciences, Gravity wave, Troposphere, Atmospheric tide