On transition-zone water clouds

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Abstract

A recent field campaign was conducted to measure the properties of thin, warm convective clouds forming under conditions of weak updrafts. During the campaign, short-lived clouds (on the order of minutes) with droplets' effective radius of 1-2 mum and low liquid water path (∼ 500 mg m2) were measured. These low values are puzzling, since in most studies an effective radius of 4 Î1/4m is reported to serve as the lower bound for clouds. A theoretical cloud model designed to resolve the droplet-activation process suggested conditions that favor the formation of such clouds. Here we show that these clouds, which mark the transition from haze to cloud, are highly sensitive to the magnitude of the initial perturbation that initiated them. We define these clouds as "transition-zone clouds". The existence of such clouds poses a key challenge for the analysis of atmospheric observations and models, since they "further smooth" the transition from dry aerosol through haze pockets to cumulus clouds. © 2014 Author(s).

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APA

Hirsch, E., Koren, I., Levin, Z., Altaratz, O., & Agassi, E. (2014). On transition-zone water clouds. Atmospheric Chemistry and Physics, 14(17), 9001–9012. https://doi.org/10.5194/acp-14-9001-2014

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