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Computational fluid dynamics / Fluid dynamics / Numerical analysis / Semi-Lagrangian scheme / Weather prediction / Trajectory / Chemical transport model / Advection / Upwind scheme / Atmospheric sciences / Calculus / Meteorology


Geosci. Model Dev., 4, 511–541, 2011 www.geosci-model-dev.netdoi:gmd © Author(sCC Attribution 3.0 License. Geoscientific
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Document Date: 2014-12-04 04:01:10


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Continent

Europe / /

Country

Denmark / /

/

Event

Environmental Issue / /

Facility

Denmark Bohr Institute / Danish Meteorological Institute / Aarhus University / University of Copenhagen / National Environmental Research Institute / Niels Environmental Research Institute / /

IndustryTerm

atmospheric chemical transport model / selected numerical advection algorithms / chemical reactions / analytical solution / chemical version / chemical development / chemical scheme / chemical submodel / chemical transport / chemical part / photo-chemical species / numerical algorithms / chemical constituent / chemical species / advection algorithm / individual chemical species / chemical constituents / numerical solutions / numerical solution / /

Organization

European Geosciences Union / Niels Environmental Research Institute / National Environmental Research Institute / Aarhus University / Denmark Bohr Institute / University of Copenhagen / Danish Meteorological Institute / /

Person

Williamson / Dev / Geosci / /

Position

Geoscientific Model Development Semi-Lagrangian methods / Model / model the chemical development / Forester / General / MM5v3 model run / /

Product

Pentax K-x Digital Camera / /

ProgrammingLanguage

Fortran / /

Technology

3-D / selected numerical advection algorithms / 5 Algorithms / advection algorithm / /

URL

www.geosci-model-dev.net/4/511/2011 / /

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