ACE-2期间的云凝结核和云滴测量

IF 2.3 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES Tellus Series B-Chemical and Physical Meteorology Pub Date : 2000-04-01 DOI:10.1034/J.1600-0889.2000.00044.X
J. Snider, J. Brenguier
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引用次数: 105

摘要

在第二次气溶胶表征试验(ACE-2)中,研究了层积云性质与气溶胶之间的关系。本文介绍了云凝结核(CCN)激活谱、上升气流速度、云微物理和气溶胶特性等相关测量数据。结果表明,基于上升气流速度和CCN激活谱计算的液滴浓度与直接观测结果一致。还讨论了CCN激活谱、积累模式大小分布和亚微米气溶胶组成的测量结果之间的明显差异。观测到的CCN、上升气流和云滴之间的一致性是必要的细化;然而,需要对ACE-2数据集进行扩展分析,以指导改进气溶胶与云微物理之间相互作用的模式模拟。特别是,有必要对气溶胶大小光谱和化学成分测量进行检查,以期验证将气溶胶和云动力学特性与云反照率联系起来的液滴激活方案。
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Cloud condensation nuclei and cloud droplet measurements during ACE-2
During the 2nd Aerosol Characterization Experiment (ACE-2), relationships between stratocumulus cloud properties and aerosols were examined. Here, the relevant measurements including the cloud condensation nuclei (CCN) activation spectrum, updraft velocity, cloud microphysical and aerosol properties are presented. It is shown that calculations of droplet concentration based on updraft velocity and the CCN activation spectrum are consistent with direct observations. Also discussed is an apparent disparity among measurements of the CCN activation spectrum, the accumulation mode size distribution, and the composition of the submicrometric aerosol. The observed consistency between CCN, updraft and cloud droplets is a necessary refinement; however, extended analyses of the ACE-2 data set are needed to guide improvements in model simulations of the interaction between aerosols and cloud microphysics. In particular, there is need for an examination of aerosol size spectra and chemical composition measurements with a view towards validating droplet activation schemes which relate the aerosol and cloud dynamical properties to cloud albedo.
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期刊介绍: Tellus B: Chemical and Physical Meteorology along with its sister journal Tellus A: Dynamic Meteorology and Oceanography, are the international, peer-reviewed journals of the International Meteorological Institute in Stockholm, an independent non-for-profit body integrated into the Department of Meteorology at the Faculty of Sciences of Stockholm University, Sweden. Aiming to promote the exchange of knowledge about meteorology from across a range of scientific sub-disciplines, the two journals serve an international community of researchers, policy makers, managers, media and the general public.
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