Russell P B, Morley B M, Livingston J M, Grams G W, Patterson E M
SRI International, Atmospheric Science Center, Menlo Park, California 94025, USA.
Appl Opt. 1982 May 1;21(9):1541-53. doi: 10.1364/AO.21.001541.
Aerosol and cloud measurements are simulated for a space shuttle lidar. Expected errors (in signal, transmission, density, and calibration) are calculated algebraically and checked by simulating measurements and retrievals using random number generators. Vertical resolution is 0.1-0.5 km in the troposphere, 0.5-2.0 km above, except 0.25-1.0 km in mesospheric cloud and aerosol layers. Horizontal resolution is 100-2000 km. By day vertical structure is retrieved for tenuous clouds, Saharan aerosols, and boundary layer aerosols (at 0.53 and 1.06 microm) as well as strong volcanic stratospheric aerosols (at 0.53 microm). Quantitative backscatter is retrieved provided that particulate optical depth does not exceed approximately 0.3. By night all these constituents are retrieved plus upper tropospheric and stratospheric aerosols (at 1.06 microm), mesospheric aerosols (at 0.53 microm), and noctilucent clouds (at 1.06 and 0.53 microm). Molecular density is a leading source of error in measuring nonvolcanic stratospheric and upper tropospheric aerosols.
针对航天飞机激光雷达对气溶胶和云进行了测量模拟。通过代数计算得出预期误差(信号、传输、密度和校准方面的误差),并使用随机数生成器模拟测量和反演来进行检验。对流层的垂直分辨率为0.1 - 0.5千米,对流层以上为0.5 - 2.0千米,但中层云和气溶胶层的垂直分辨率为0.25 - 1.0千米。水平分辨率为100 - 2000千米。白天可反演稀薄云、撒哈拉气溶胶和边界层气溶胶(0.53和1.06微米处)以及强烈的平流层火山气溶胶(0.53微米处)的垂直结构。若颗粒光学深度不超过约0.3,则可反演定量后向散射。夜间可反演所有这些成分,外加对流层上部和平流层气溶胶(1.06微米处)、中层气溶胶(0.53微米处)以及夜光云(1.06和0.53微米处)。在测量非火山平流层和对流层上部气溶胶时,分子密度是误差的主要来源。