FEMWATER Flow Model Workflow: Difference between revisions
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This is a top level workflow. This workflow includes all of the specific workflows needed in creating a general FEMWATER flow model project using the conceptual model approach. Newer and infrequent GMS users should start here. | This is a top level workflow. This workflow includes all of the specific workflows needed in creating a general FEMWATER flow model project using the conceptual model approach. Newer and infrequent GMS users should start here. | ||
To build a [[GMS:FEMWATER|FEMWATER]] | To build a [[GMS:FEMWATER|FEMWATER]] flow model in GMS, use the following steps: | ||
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!style="text-align:left;"|7. Define materials. | !style="text-align:left;"|7. Define materials. | ||
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{{GMS Materials Workflow}} | |||
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!style="text-align:left;"|8. Generate a 2D mesh. | |||
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: Generate a 2D mesh to use in creating elevation zones. | |||
{{GMS Build 2D Mesh Workflow}} | |||
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!style="text-align:left;"|9. Generate TINs. | |||
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<blockquote> | <blockquote> | ||
{{FEMWATER Build TINs Workflow}} | |||
</blockquote> | |||
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!style="text-align:left;"|10. Generate a 3D mesh. | |||
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!style="text-align:left;"|11. Set up the FEMWATER simulation. | |||
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<blockquote> | |||
{{FEMWATER Set Up Workflow}} | |||
</blockquote> | </blockquote> | ||
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!style="text-align:left;"|12. Map the model. | |||
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{{GMS Map to FEMWATER Workflow}} | |||
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!style="text-align:left;"|13. Define material properties. | |||
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{{FEMWATER Materials Workflow}} | |||
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!style="text-align:left;"|14. Run FEMWATER. | |||
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{{Run FEMWATER Workflow}} | |||
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!style="text-align:left;"|15. Visualize the solution. | |||
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<blockquote> | |||
{{FEMWATER Vizualization Workflow}} | |||
</blockquote> | |||
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{{Navbox GMS}} | {{Navbox GMS}} | ||
[[Category:GMS Workflows]] | [[Category:GMS Workflows|FEMWATER]] | ||
[[Category:FEMWATER]] | [[Category:FEMWATER|Workflows]] |
Latest revision as of 16:08, 17 February 2017
This is a top level workflow. This workflow includes all of the specific workflows needed in creating a general FEMWATER flow model project using the conceptual model approach. Newer and infrequent GMS users should start here.
To build a FEMWATER flow model in GMS, use the following steps:
1. Start GMS. | ||||||||||
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2. Import data. | ||||||||||||||||||||
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3. Define the project boundaries. | ||||||||||||||||||||||||||||||||||||||
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4. Define boundary conditions. | ||||
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5. Assign recharge values. |
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6. Create wells. | ||||||||||||||||||||||||||||
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7. Define materials. |
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8. Generate a 2D mesh. |
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9. Generate TINs. | ||||||||
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10. Generate a 3D mesh. |
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11. Set up the FEMWATER simulation. | ||||||||||||||||||||||
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12. Map the model. |
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13. Define material properties. |
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14. Run FEMWATER. |
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15. Visualize the solution. | ||||||||||||||||||||||||||||||||||||||||||||||||
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GMS – Groundwater Modeling System | ||
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Modules: | 2D Grid • 2D Mesh • 2D Scatter Point • 3D Grid • 3D Mesh • 3D Scatter Point • Boreholes • GIS • Map • Solid • TINs • UGrids | |
Models: | FEFLOW • FEMWATER • HydroGeoSphere • MODAEM • MODFLOW • MODPATH • mod-PATH3DU • MT3DMS • MT3D-USGS • PEST • PHT3D • RT3D • SEAM3D • SEAWAT • SEEP2D • T-PROGS • ZONEBUDGET | |
Aquaveo |