研究目的
To investigate the impact of the 20 March 2015 solar eclipse on both the planetary boundary layer (PBL) height and the aerosol optical and microphysical properties along the whole aerosol column.
研究成果
The study demonstrated that the solar eclipse had a significant impact on the PBL height and the optical and microphysical properties of the aerosol load. The eclipse cooling effect weakened the turbulence activity at the surface and altered the aerosol properties along the whole aerosol column. The SD technique applied to lidar measurements proved effective in determining the PBL height and characterizing the aerosol layers.
研究不足
The study is limited by the specific geographical location and local meteorology of the monitoring site, which may affect the generalizability of the results. The lidar system's overlap function may also introduce uncertainties in the measurements.
1:Experimental Design and Method Selection:
Lidar measurements at 355, 532, and 1064 nm were performed to investigate the impact of the solar eclipse on the PBL height and aerosol properties. The standard deviation (SD) technique was applied to lidar range corrected signals (RCS) and linear volume depolarization ratio (δV) profiles to determine the PBL height and aloft aerosol layers.
2:Sample Selection and Data Sources:
Measurements were performed at Lecce (
3:3°N, 1°E) in south-eastern Italy. Data from a Kipp & Zonen CMP21 model pyranometer and a Solent-Gill Research sonic anemometer were also used. List of Experimental Equipment and Materials:
UNILE lidar system operating at 355, 532, and 1064 nm, Kipp & Zonen CMP21 pyranometer, Solent-Gill Research sonic anemometer.
4:Experimental Procedures and Operational Workflow:
Lidar measurements were performed from 07:45 to 11:45 UTC on 20 March
5:The SD technique was applied to RCS and δV profiles to determine PBL height and aloft aerosol layers. Data Analysis Methods:
20 The Klett inversion technique was used to retrieve aerosol backscatter coefficient profiles. The ?ngstr?m exponent was calculated to understand the aerosol size distribution.
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