Model:Gvg3Dp: Difference between revisions
From CSDMS
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|Spatial dimensions=3D | |Spatial dimensions=3D | ||
|One-line model description=3D Numerical Simulation of Turbidity Currents | |One-line model description=3D Numerical Simulation of Turbidity Currents | ||
|Extended model description=Three dimensional simulations of the Turbidity currents using DNS of incompressible Navier-Stokes and transport equations. | |Extended model description=Three dimensional simulations of the Turbidity currents using DNS of incompressible Navier-Stokes and transport equations. | ||
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{{Model technical information | {{Model technical information | ||
|Supported platforms=Unix, Linux | |Supported platforms=Unix, Linux | ||
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|Does model development still take place?=Yes | |Does model development still take place?=Yes | ||
|Model availability=As code | |Model availability=As code | ||
|Program license type=GPL v2 | |Program license type=GPL v2 | ||
|Memory requirements=Typical ratio: 250,000 nodes requires 1 Gbyte | |Memory requirements=Typical ratio: 250,000 nodes requires 1 Gbyte | ||
|Typical run time=-- | |Typical run time=-- | ||
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*Particle Parameters: Settling velocities. | *Particle Parameters: Settling velocities. | ||
*Flags: Output writing flags. Inflow/Outflow to the domain flags. | *Flags: Output writing flags. Inflow/Outflow to the domain flags. | ||
|Input format=ASCII | |Input format=ASCII | ||
|Describe output parameters=Depending on the flags indicated in the input file, typical flow quantities are stored to the file at the given time steps.<br> | |Describe output parameters=Depending on the flags indicated in the input file, typical flow quantities are stored to the file at the given time steps.<br> | ||
Velocities, Pressure, Concentration (of the particles).<br> | Velocities, Pressure, Concentration (of the particles).<br> | ||
Depending on the problems, some other quantities could be stored too. | Depending on the problems, some other quantities could be stored too. | ||
|Output format=ASCII, Binary | |Output format=ASCII, Binary | ||
|Pre-processing software needed?=No | |Pre-processing software needed?=No | ||
|Post-processing software needed?=Yes | |Post-processing software needed?=Yes | ||
|Describe post-processing software=Yes, a C code is developed for this gvg3Dp in order to convert the raw binary data into the xml-vtr format which can be read using paraview software. | |Describe post-processing software=Yes, a C code is developed for this gvg3Dp in order to convert the raw binary data into the xml-vtr format which can be read using paraview software. | ||
|Visualization software needed?=Yes | |Visualization software needed?=Yes | ||
|Other visualization software=Paraview | |Other visualization software=Paraview | ||
}} | }} | ||
{{Process description model | {{Process description model | ||
|Describe processes represented by the model=Any type of turbidity (or gravity) currents could be modeled with this code. Is also handles the flows passing complex topographies, inflow/outflows too. | |Describe processes represented by the model=Any type of turbidity (or gravity) currents could be modeled with this code. Is also handles the flows passing complex topographies, inflow/outflows too. | ||
|Describe key physical parameters and equations=Incompressible flow equations: Navier-Stokes with Boussinesq approximations. Transport equation to describe the motion of particles (or Salanity or Temperature). | |Describe key physical parameters and equations=Incompressible flow equations: Navier-Stokes with Boussinesq approximations. Transport equation to describe the motion of particles (or Salanity or Temperature). | ||
|Describe length scale and resolution constraints=With the current version of the code (DNS and no turbulence model) we are restricted to low Reynolds numbers. Up to maximum 10,000. | |Describe length scale and resolution constraints=With the current version of the code (DNS and no turbulence model) we are restricted to low Reynolds numbers. Up to maximum 10,000. | ||
|Describe time scale and resolution constraints=-- | |Describe time scale and resolution constraints=-- | ||
|Describe any numerical limitations and issues=-- | |Describe any numerical limitations and issues=-- | ||
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}} | }} | ||
{{Documentation model | {{Documentation model | ||
|Provide key papers on model if any=High Resolution Simulations of Particle-Driven Gravity Currents, with V. Birman, F. Blanchette, M. Strauss, B. Kneller, M.E. Glinsky, F. Necker, C. Härtel and L. Kleiser. Direct and Large Eddy Simulation VI (Springer), Poitiers, France, September 2005 | |Provide key papers on model if any=High Resolution Simulations of Particle-Driven Gravity Currents, with V. Birman, F. Blanchette, M. Strauss, B. Kneller, M.E. Glinsky, F. Necker, C. Härtel and L. Kleiser. Direct and Large Eddy Simulation VI (Springer), Poitiers, France, September 2005 | ||
|Manual model available=No | |Manual model available=No | ||
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|CCA component=No but possible | |CCA component=No but possible | ||
|IRF interface=No but possible | |IRF interface=No but possible | ||
|CMT component=Not yet | |||
}} | }} | ||
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{{End headertab}} | {{End headertab}} | ||
<!-- Edit the part above to update info on other papers --> | <!-- Edit the part above to update info on other papers --> |