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Geosci. Model Dev., 7, 1889–1900, 2014 www.geosci-model-dev.net[removed]doi:[removed]gmd[removed] © Author(s[removed]CC Attribution 3.0 License. Optimization of NWP model closure parameters using total energy
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Document Date: 2014-09-02 05:52:13


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File Size: 3,26 MB

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City

Lappeenranta / Helsinki / Reading / /

Continent

Africa / South America / /

Country

United Kingdom / Finland / /

Facility

Lappeenranta University of Technology / Finnish Meteorological Institute / University Correspondence / /

IndustryTerm

kinetic energy term / ensemble prediction systems / zonal mean energy norm / areal-weighted energy norm difference / nonlinear and general nonstationary inverse problem tools / latent energy term / final solution / kinetic energy mean forecast difference / kinetic energy mean difference / operational applications / multiphase systems / zonal mean energy norm differences / latent energy / energy norm improvement / kinetic energy error / atmospheric dry total energy norm / mean energy norm difference / kinetic energy / kinetic energy distribution / moist energy norm / potential energy / gas constant / energy norm differences / tropical kinetic energy improvements / energy norm / algorithmic tools / energy state difference / energy norm terms / energy norms / forecast error energy norm / realistic kinetic energy evolution / dry total energy / dry total energy norm / areal-weighted energy norm / energy norm variability / using energy norm / /

MarketIndex

SET 50 / /

NaturalFeature

Atlantic ocean / Andes / Africa / South America / Indian ocean / /

Organization

European Geosciences Union / Finnish Meteorological Institute / Department of Physics / Lappeenranta University of Technology / European Centre for Medium-Range Weather Forecasts / /

Person

Dev / /

Position

Model / /

ProgrammingLanguage

J / /

Region

Southeast Asia / /

Technology

EPPES algorithm / tuning algorithm / pdf / /

URL

www.geosci-model-dev.net/7/1889/2014 / /

SocialTag