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Turbulent condensation of droplets: direct simulation and a stochastic model

Authors :
Paoli, Roberto
Shariff, Karim
Source :
Journal of the Atmospheric Sciences. March, 2009, Vol. 66 Issue 3, p723, 18 p.
Publication Year :
2009

Abstract

The effect of turbulent mixing on droplet condensation is studied via direct numerical simulations of a population of droplets in a periodic box of homogeneous isotropic turbulence. Each droplet is tracked as a fluid particle whose radius grows by condensation of water vapor. Forcing of the small wave numbers is used to sustain velocity, vapor, and temperature fluctuations. Temperature and vapor fluctuations lead to supersaturation fluctuations, which are responsible for broadening the droplet size distribution in qualitative agreement with in situ measurements. A model for the condensation of a population of cloud droplets in a homogeneous turbulent flow is presented. The model consists of a set of Langevin (stochastic) equations for the droplet area, supersaturation, and temperature surrounding the droplets. These equations yield corresponding ordinary differential equations for various moments and correlations. The statistics predicted by the model, for instance, the droplet area supersaturation correlation, reproduce the simulations well.

Details

Language :
English
ISSN :
00224928
Volume :
66
Issue :
3
Database :
Gale General OneFile
Journal :
Journal of the Atmospheric Sciences
Publication Type :
Academic Journal
Accession number :
edsgcl.197927183