|
|Scientist Name:
|Model Type (1D ensemble mean, 2D cloud resolving, or 3D LES):
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|(1) Computation
|
|Computer used for simulation:
|CPU time:
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|(2) Numerical Domain
|
|Dimensions (fill in if different than specified in problem description):
|Domain size in x-direction:
|Domain size in y-direction:
|Domain size in z-direction:
|Number of grid points in x-direction:
|Number of grid points in y-direction:
|Number of grid points in z-direction:
|Grid size in x-direction:
|Grid size in y-direction:
|Grid size in z-direction:
|Time step for dynamics:
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|(3) Numerical Technique
|
|Numerical method (finite-difference, spectral, etc.):
|Advection scheme and its order of accuracy:
|Time scheme and its order of accuracy:
|Dynamical equations (elastic, anelastic, etc.):
|Lateral boundary conditions:
|Upper boundary condition:
|How was translation velocity of the reference frame chosen?
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|(4) Physical Parameterizations
|
|Microphysical parameterizations:
|Drizzle/Rain parameterization:
|Other comments on physical parameterizations:
|etc.
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|(5) Turbulence Closure Scheme (if applicable)
|
|Turbulence closure (SGS or ensemble mean):
|Specific turbulence closure type (Mellor-Yamada, etc.):
|Variables predicted by the turbulence closure (eddy diffusivities, turbulent kinetic |energy, etc.):
|Closure for dissipation rate:
|Closure for turbulent dissipation length scale:
|Closure for turbulent diffusion length scale:
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|(6) Documentation
|
|Please provide references that more fully describe your model,
if available.
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