Department of Chemical and Environmental Engineering, University of Arizona, Tucson, Arizona 85721, USA.
Department of Hydrology and Atmospheric Sciences, University of Arizona, Tucson, Arizona 85721, USA.
Sci Data. 2018 Feb 27;5:180026. doi: 10.1038/sdata.2018.26.
Airborne measurements of meteorological, aerosol, and stratocumulus cloud properties have been harmonized from six field campaigns during July-August months between 2005 and 2016 off the California coast. A consistent set of core instruments was deployed on the Center for Interdisciplinary Remotely-Piloted Aircraft Studies Twin Otter for 113 flight days, amounting to 514 flight hours. A unique aspect of the compiled data set is detailed measurements of aerosol microphysical properties (size distribution, composition, bioaerosol detection, hygroscopicity, optical), cloud water composition, and different sampling inlets to distinguish between clear air aerosol, interstitial in-cloud aerosol, and droplet residual particles in cloud. Measurements and data analysis follow documented methods for quality assurance. The data set is suitable for studies associated with aerosol-cloud-precipitation-meteorology-radiation interactions, especially owing to sharp aerosol perturbations from ship traffic and biomass burning. The data set can be used for model initialization and synergistic application with meteorological models and remote sensing data to improve understanding of the very interactions that comprise the largest uncertainty in the effect of anthropogenic emissions on radiative forcing.
已对 2005 年至 2016 年 7 月至 8 月间加利福尼亚沿海地区的六次实地考察期间的气象、气溶胶和层积云特性的空气传播测量值进行了协调。在 113 个飞行日中,有 514 个飞行小时,在中心跨学科遥控飞机研究双水獭飞机上一致部署了一套核心仪器。编译数据集的一个独特方面是对气溶胶微观物理特性(大小分布、组成、生物气溶胶检测、吸湿性、光学)、云水成分以及不同采样入口的详细测量,以区分清洁空气气溶胶、云间气溶胶和云滴残留颗粒。测量和数据分析遵循经过验证的质量保证方法。该数据集适用于与气溶胶-云-降水-气象-辐射相互作用相关的研究,特别是由于船舶交通和生物质燃烧造成的气溶胶急剧干扰。该数据集可用于模型初始化,并与气象模型和遥感数据协同应用,以提高对构成人为排放对辐射强迫影响的最大不确定性的相互作用的理解。