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Precipitation / Liquid water content / Entrainment / Cloud / Drizzle / Rain / Turbulence kinetic energy / Stratocumulus cloud / Atmospheric model / Atmospheric sciences / Meteorology / Cumulus


Atmos. Chem. Phys., 14, 6557–6570, 2014 www.atmos-chem-phys.net[removed]doi:[removed]acp[removed] © Author(s[removed]CC Attribution 3.0 License. The effects of turbulent collision–coalescence on precipitati
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Document Date: 2014-07-01 02:26:17


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City

Aspendale / /

Company

Boundary Layer Cloud Working Group / Lilly / /

/

Facility

km square / University of California Los Angeles Large Eddy Simulation / /

IndustryTerm

turbulent kinetic energy / turbulent kinetic energy dissipation rate / numerical solution / /

Organization

European Geosciences Union / Australian Bureau of Meteorology / UCLA / University of California / CSIRO / GCSS BLCWG / Australia Centre for Australian Weather and Climate Research / /

Position

collector / /

Product

Victoria / Franklin / /

ProvinceOrState

Victoria / /

PublishedMedium

Atmospheric Research / /

Technology

condensation / simulation / DNS / /

URL

www.atmos-chem-phys.net/14/6557/2014 / /

SocialTag