Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mountain waves penetrating into the mesosphere observed by airborne lidar

View through CrossRef
<p>We present observations by airborne lidar which were obtained over the southern Andes during the SOUTHTRAC campaign in September 2019. Operated onboard the German research aircraft HALO, the Airborne LIdar for Middle Atmosphere research (ALIMA) acquired high resolution temperature profiles in the altitude range 20-80 km. The data show signatures of mountain waves located at the mountain ridges, but often these signatures also extend several hundred kilometer downstream. While during the first days of the campaign mountain waves were able to penetrate into the mesosphere, observations obtained in the following weeks indicate a downward shift of the breaking zone from the mesosphere to the stratosphere which is consistent with the early breakdown of the polar vortex. Our data also indicate evidence for generation of secondary gravity waves within the breaking zone of the mountain waves.</p>
Title: Mountain waves penetrating into the mesosphere observed by airborne lidar
Description:
<p>We present observations by airborne lidar which were obtained over the southern Andes during the SOUTHTRAC campaign in September 2019.
Operated onboard the German research aircraft HALO, the Airborne LIdar for Middle Atmosphere research (ALIMA) acquired high resolution temperature profiles in the altitude range 20-80 km.
The data show signatures of mountain waves located at the mountain ridges, but often these signatures also extend several hundred kilometer downstream.
While during the first days of the campaign mountain waves were able to penetrate into the mesosphere, observations obtained in the following weeks indicate a downward shift of the breaking zone from the mesosphere to the stratosphere which is consistent with the early breakdown of the polar vortex.
Our data also indicate evidence for generation of secondary gravity waves within the breaking zone of the mountain waves.
</p>.

Related Results

Development of a multimodal imaging system based on LIDAR
Development of a multimodal imaging system based on LIDAR
(English) Perception of the environment is an essential requirement for the fields of autonomous vehicles and robotics, that claim for high amounts of data to make reliable decisio...
Airborne LiDAR for DEM generation: some critical issues
Airborne LiDAR for DEM generation: some critical issues
Airborne LiDAR is one of the most effective and reliable means of terrain data collection. Using LiDAR data for digital elevation model (DEM) generation is becoming a standard prac...
Multi-scale mountain waves observed with the ALIMA lidar during SOUTHTRAC-GW above the southern Andes
Multi-scale mountain waves observed with the ALIMA lidar during SOUTHTRAC-GW above the southern Andes
<p>During the SOUTHTRAC-GW (Southern hemisphere Transport, Dynamics and Chemistry – Gravity Waves) field campaign, gravity waves above the Southern Ande...
Aeolian bedforms formed by ice sublimation and vapor condensation on Louth crater ice, Mars.
Aeolian bedforms formed by ice sublimation and vapor condensation on Louth crater ice, Mars.
<p><strong>Introduction:</strong> Louth Crater is a 36 km diameter located at 70 °N, 103.2 °E (Fig. 1) less than...
Innovative approach for automatic land cover information extraction from LiDAR data
Innovative approach for automatic land cover information extraction from LiDAR data
An airborne laser scanning (ALS) system with LiDAR (Light Detection and Ranging) technology is a highly precise and accurate 3D point data acquisition technique. LiDAR technology ...
Innovative approach for automatic land cover information extraction from LiDAR data
Innovative approach for automatic land cover information extraction from LiDAR data
An airborne laser scanning (ALS) system with LiDAR (Light Detection and Ranging) technology is a highly precise and accurate 3D point data acquisition technique. LiDAR technology ...
Improving the ranging performance of chaos LiDAR
Improving the ranging performance of chaos LiDAR
Chaos lidar has gained significant attention due to its high spatial resolution, natural anti-interference capability, and confidentiality. However, constrained by the power of the...
Automated Tree Crown Discrimination Using Three-Dimensional Shape Signatures Derived from LiDAR Point Clouds
Automated Tree Crown Discrimination Using Three-Dimensional Shape Signatures Derived from LiDAR Point Clouds
Discrimination of different tree crowns based on their 3D shapes is essential for a wide range of forestry applications, and, due to its complexity, is a significant challenge. Thi...

Back to Top