研究目的
To develop and validate a depolarisation lidar-based method for determining liquid-cloud microphysical properties, such as effective radius and liquid water content, by leveraging multiple scattering effects and applying an optimal-estimation inversion with pre-computed look-up tables.
研究成果
The depolarisation lidar inversion method provides accurate retrievals of cloud microphysical properties, validated through simulations and comparisons with radar reflectivities and aerosol data. It shows consistency with previous studies and has potential for widespread application in aerosol-cloud interaction research.
研究不足
The method is limited to clouds with quasi-linear LWC profiles and constant droplet number density near cloud base. It is sensitive to depolarisation calibration errors and assumes no drizzle in non-drizzling conditions. The FOV and wavelength specifics may restrict generalizability.
1:Experimental Design and Method Selection:
The study uses a retrieval procedure based on optimal-estimation inversion with pre-computed look-up tables from lidar Monte Carlo multiple-scattering simulations. It assumes quasi-linear LWC profiles and constant cloud-droplet number density in the cloud-base region.
2:Sample Selection and Data Sources:
Data from the Cabauw Experimental Site for Atmospheric Research (CESAR) in the Netherlands, including depolarisation lidar and radar measurements, and simulations from the Dutch Atmospheric LES model (DALES).
3:List of Experimental Equipment and Materials:
A depolarisation lidar (Leosphere ALS-450 at 355 nm), a 35 GHz cloud-profiling radar, and a Scanning Mobility Particle Sizer (SMPS) for aerosol measurements.
4:Experimental Procedures and Operational Workflow:
Lidar and radar data were collected and processed. The inversion procedure involved averaging and binning data, initializing minimization, and applying optimal-estimation to retrieve cloud parameters.
5:Data Analysis Methods:
Data were analyzed using chi-square fitting, error propagation, and comparisons with radar reflectivities and aerosol concentrations.
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