Profiling aerosol optical, microphysical and hygroscopic properties in ambient conditions by combining in situ and remote sensing
[摘要] We present the In situ/Remote sensing aerosol Retrieval Algorithm (IRRA) that combines airborne in situ and lidar remote sensing data to retrieve vertical profiles of ambient aerosol optical, microphysical and hygroscopic properties, employing the ISORROPIA II model for acquiring the particle hygroscopic growth. Here we apply the algorithm on data collected from the Facility for Airborne Atmospheric Measurements (FAAM) BAe-146 research aircraft during the ACEMED campaign in the Eastern Mediterranean. Vertical profiles of aerosol microphysical properties have been derived successfully for an aged smoke plume near the city of Thessaloniki with aerosol optical depth of ââ¼ââ¯0.4 at 532â¯nm, single scattering albedos of ââ¼ââ¯0.9â0.95 at 550â¯nm and typical lidar ratios for smoke of ââ¼ââ¯60â80â¯sr at 532â¯nm. IRRA retrieves highly hydrated particles above land, with 55 and 80â¯% water volume content for ambient relative humidity of 80 and 90â¯%, respectively. The proposed methodology is highly advantageous for aerosol characterization in humid conditions and can find valuable applications in aerosolâcloud interaction schemes. Moreover, it can be used for the validation of active space-borne sensors, as is demonstrated here for the case of CALIPSO.
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[效力级别] [学科分类] 大气科学
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