SMS:TUFLOW Project Workflow: Difference between revisions
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:# Bring up the TUFLOW ''Model Control'' dialog. | :# Bring up the TUFLOW ''Model Control'' dialog and define parameters as needed for: | ||
:##Time including time steps, start and end times. | |||
:##Output including map outputs, dataset outputs, and log outputs. | |||
:##Wetting and drying settings. | |||
:##Restart files options. | |||
:##Initial water levels. | |||
:##Eddy viscosity formulation. | |||
:##Boundary condition events. | |||
:##Constituent properties. | |||
:##Material set management. | |||
:##Miscellaneous options. | |||
:##1D general controls. | |||
:##1D network controls. | |||
:##1D automatic manholes. | |||
:# Add define material properties. | :# Add define material properties. | ||
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Revision as of 14:16, 6 July 2015
In general, to build a TUFLOW model in SMS, use the following steps:
1. SMS project setup. | ||||
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2. Import data. | ||||||||||||||||||||||
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3. Review and edit elevation data. |
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4. Define model limits (domain). |
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5. Set-up boundary conditions. |
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6. Define general material properties. |
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7. TUFLOW simulation setup. |
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8. Define TUFLOW material sets. |
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8. Define TUFLOW model properties. |
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9. Run TUFLOW. |
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10. Review results. |
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11. Compare datasets. |
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12. Data visualization. |
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SMS – Surface-water Modeling System | ||
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Modules: | 1D Grid • Cartesian Grid • Curvilinear Grid • GIS • Map • Mesh • Particle • Quadtree • Raster • Scatter • UGrid | |
General Models: | 3D Structure • FVCOM • Generic • PTM | |
Coastal Models: | ADCIRC • BOUSS-2D • CGWAVE • CMS-Flow • CMS-Wave • GenCade • STWAVE • WAM | |
Riverine/Estuarine Models: | AdH • HEC-RAS • HYDRO AS-2D • RMA2 • RMA4 • SRH-2D • TUFLOW • TUFLOW FV | |
Aquaveo • SMS Tutorials • SMS Workflows |