Abstract
The inclusion of van der Waals attractions in the interaction between cloud droplets has been recently shown to significantly increase the collision efficiencies of the smaller droplets. These larger values for the collision efficiencies are used in a population dynamics model of the droplet size distribution evolution with time. Evolutions of several initial cloud droplet spectra have been tracked in time. Size evolutions are compared as predicted from the use of collision efficiencies computed using two different models to allow for droplet-droplet contact: One which considers slip flow effects only, and one which considers the combined effects of van der Waals forces and slip flow. The rate at which the droplet mass density function shifts to larger droplet sizes is increased by typically 20-25% when collision efficiencies which include van der Waals forces are used. The overall result is the more rapid formation of larger, rain-sized droplets. -from Authors
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CITATION STYLE
Rogers, J. R., & Davis, R. H. (1990). The effects of van der Waals attractions on cloud droplet growth by coalescence. Journal of the Atmospheric Sciences, 47(9), 1075–1080. https://doi.org/10.1175/1520-0469(1990)047<1075:TEOVDW>2.0.CO;2
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