Ground-based differential absorption lidar for water-vapor profiling: assessment of accuracy, resolution, and meteorological applications

被引:115
作者
Wulfmeyer, V [1 ]
Bosenberg, J [1 ]
机构
[1] Max Planck Inst Meteorol, D-20146 Hamburg, Germany
来源
APPLIED OPTICS | 1998年 / 37卷 / 18期
关键词
D O I
10.1364/AO.37.003825
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The accuracy and the resolution of water-vapor measurements by use of the ground-based differential absorption lidar (DIAL) system of the Max-Planck-Institute (MPI) are determined. A theoretical analysis, intercomparisons with radiosondes, and measurements in high-altitude clouds allow the conclusion that, with the MPI DIAL system, water-vapor measurements with a systematic error of <5% in the whole troposphere can be performed. Special emphasis is laid on the outstanding daytime and nighttime performance of the DIAL system in the lower troposphere. With a time resolution of 1 min the statistical error varies between 0.05 g/m(3) in the near range using 75 m and-depending on the meteorological conditions-approximately 0.25 g/m(3) at 2 km using 150-m vertical resolution. When the eddy correlation method is applied, this accuracy and resolution are sufficient to determine water-vapor flux profiles in the convective boundary layer with a statistical error of <10% in each data point to approximately 1700 m. The results have contributed to the fact that the DIAL method has finally won recognition as an excellent tool for tropospheric research, in particular for boundary layer research and as a calibration standard for radiosondes and satellites. (C) 1998 Optical Society of America.
引用
收藏
页码:3825 / 3844
页数:20
相关论文
共 75 条
[1]   COMBINED RAMAN ELASTIC-BACKSCATTER LIDAR FOR VERTICAL PROFILING OF MOISTURE, AEROSOL EXTINCTION, BACKSCATTER, AND LIDAR RATIO [J].
ANSMANN, A ;
RIEBESELL, M ;
WANDINGER, U ;
WEITKAMP, C ;
VOSS, E ;
LAHMANN, W ;
MICHAELIS, W .
APPLIED PHYSICS B-PHOTOPHYSICS AND LASER CHEMISTRY, 1992, 55 (01) :18-28
[2]   ERRORS IN GROUND-BASED WATER-VAPOR DIAL MEASUREMENTS DUE TO DOPPLER-BROADENED RAYLEIGH BACKSCATTERING [J].
ANSMANN, A .
APPLIED OPTICS, 1985, 24 (21) :3476-3480
[3]   CORRECTION SCHEME FOR SPECTRAL BROADENING BY RAYLEIGH-SCATTERING IN DIFFERENTIAL ABSORPTION LIDAR MEASUREMENTS OF WATER-VAPOR IN THE TROPOSPHERE [J].
ANSMANN, A ;
BOSENBERG, J .
APPLIED OPTICS, 1987, 26 (15) :3026-3032
[4]  
ANSMANN A, 1989, THESIS U HAMBURG HAM
[5]  
Bisson S. E., 1995, OPTICAL REMOTE SENSI, V2, P220
[6]   Ground-based differential absorption lidar for water-vapor and temperature profiling: methodology [J].
Bosenberg, J .
APPLIED OPTICS, 1998, 37 (18) :3845-3860
[7]  
BOSENBERG J, 1991, 71 M PLANCK I MET
[8]  
BOSENBERG J, 1990, 60 M PLANCK I MET
[9]  
Browell E. V., 1996, ADV ATMOSPHERIC REMO, P289
[10]   TEMPERATURE SENSITIVITY OF DIFFERENTIAL ABSORPTION LIDAR MEASUREMENTS OF WATER-VAPOR IN THE 720-NM REGION [J].
BROWELL, EV ;
ISMAIL, S ;
GROSSMANN, BE .
APPLIED OPTICS, 1991, 30 (12) :1517-1524