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Turbulence / Planetary boundary layer / Atmospheric model / Entrainment / Climate model / Turbulence kinetic energy / Atmospheric convection / Rain / METAR / Atmospheric sciences / Meteorology / Atmospheric thermodynamics


Q. J. R. Meteorol. Soc), 128, pp. 1075–1093 Large-eddy simulation of the diurnal cycle of shallow cumulus convection over land By A. R. BROWN1¤ , R. T. CEDERWALL2 , A. CHLOND3 , P. G. DUYNKERKE4 , J.-C. GOLAZ5
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Document Date: 2006-09-27 15:47:32


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City

Meteorologie / Nieuwstadt / /

Company

Lawrence Livermore National Laboratory / European Cloud Systems / GCSS Working Group / The times / /

Country

Germany / United States / Netherlands / United Kingdom / /

Currency

GBP / /

Event

Environmental Issue / /

Facility

Colorado State University / West Virginia University / Royal Netherlands Meteorological Institute / Pier Siebesma / Utrecht University / University of California Los Angeles / University of Oklahoma / University of California / Max Planck Institute / /

IndustryTerm

subgrid turbulence kinetic energy / individual solutions / /

Organization

Royal Netherlands Meteorological Institute / ARM SGP / University of Oklahoma / Max-Planck-Institut f¨ / Colorado State University / Royal Meteorological Society / West Virginia University / National Center for Atmospheric Research / Max Planck Institute / University of California Los Angeles / Utrecht University / /

Person

Paul Mason / Stevens Anelastic Boussinesq Boussinesq Boussinesq / /

Position

mixing ratio rT / General development In order / rT / / Corresponding author / /

ProvinceOrState

Kansas / Pennsylvania / Oklahoma / California / Colorado / /

PublishedMedium

Atmospheric Research / /

Region

West Virginia / /

Technology

Radiation / condensation / simulation / /

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