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First results from the aerosol lidar and backscatter sonde intercomparison campaign STRAIT'1997 at table mountain facility during February-March 1997

Authors :
Beyerle, G
Gross, M. R
Haner, D. A
Kjome, N. T
McDermid, I. S
McGee, T. J
Rosen, J. M
Schaefer, H. - J
Schrems, O
Source :
Nineteenth International Laser Radar Conference.
Publication Year :
1998
Publisher :
United States: NASA Center for Aerospace Information (CASI), 1998.

Abstract

First results of an intercomparison measurement campaign between three aerosol lidar instruments and in-situ backscatter sondes performed at Table Mountain Facility (34.4 deg N, 117.7 deg E, 2280 m asl) in February-March 1997 are presented. During the campaign a total of 414 hours of lidar data were acquired by the Aerosol-Temperature-Lidar (ATL, Goddard Space Flight Center) the Mobile-aerosol-Raman-Lidar (MARL, Alfred Wegener Institute), and the TMF-Aerosol-Lidar (TAL, Jet Propulsion Laboratory), and four backscatter sondes were launched. From the data set altitude profiles of backscatter ratio and volume depolarization of stratospheric background aerosols at altitudes between 15 and 25 km and optically thin high-altitude cirrus clouds at altitudes below 13 km are derived. On the basis of a sulfuric acid aerosol model color ratio profiles obtained from two wavelength lidar data are compared to the corresponding profiles derived from the sonde observations. We find an excellent agreement between the in-situ and ATL lidar data with respect to backscatter and color ratio. Cirrus clouds were present on 16 of 26 nights during the campaign. Lidar observations with 17 minute temporal and 120-300 m spatial resolution indicate high spatial and temporal variability of the cirrus layers. Qualitative agreement is found between concurrent lidar measurements of backscatter ratio and volume depolarization.

Subjects

Subjects :
Instrumentation And Photography

Details

Language :
English
Database :
NASA Technical Reports
Journal :
Nineteenth International Laser Radar Conference
Publication Type :
Report
Accession number :
edsnas.19980227692
Document Type :
Report