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| "license_id": "cc-by", | | "license_id": "cc-by", |
| "license_title": "Creative Commons Attribution", | | "license_title": "Creative Commons Attribution", |
| "license_url": "http://www.opendefinition.org/licenses/cc-by", | | "license_url": "http://www.opendefinition.org/licenses/cc-by", |
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| "metadata_created": "2025-09-03T16:23:18.660781", | | "metadata_created": "2025-09-03T16:23:18.660781", |
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| "name": "modflow-usg", | | "name": "modflow-usg", |
| t | "notes": "", | t | "notes": "Overview of MODFLOW-USG\r\nMedia\r\nA plot of head errors |
| | | from an example MODFLOW-USG simulation.\r\nSources/Usage: Public |
| | | Domain. View Media Details\r\nErrors in simulated heads from the a |
| | | MODFLOW-USG simulation with ghost node correction.\r\nA version of |
| | | MODFLOW, called MODFLOW-USG (for UnStructured Grid), was developed to |
| | | support a wide variety of structured and unstructured grid types, |
| | | including nested grids and grids based on prismatic triangles, |
| | | rectangles, hexagons, and other cell shapes. Flexibility in grid |
| | | design can be used to focus resolution along rivers and around wells, |
| | | for example, or to subdiscretize individual layers to better represent |
| | | hydrostratigraphic units.\r\n\r\nMODFLOW-USG is based on an underlying |
| | | control volume finite difference (CVFD) formulation in which a cell |
| | | can be connected to an arbitrary number of adjacent cells. To improve |
| | | accuracy of the CVFD formulation for irregular grid-cell geometries or |
| | | nested grids, a generalized Ghost Node Correction (GNC) Package was |
| | | developed, which uses interpolated heads in the flow calculation |
| | | between adjacent connected cells.\r\n\r\nMODFLOW-USG includes a |
| | | Groundwater Flow (GWF) Process, based on the GWF Process in |
| | | MODFLOW-2005, as well as a new Connected Linear Network (CLN) Process |
| | | to simulate the effects of multi-node wells, karst conduits, and tile |
| | | drains, for example. The CLN Process is tightly coupled with the GWF |
| | | Process in that the equations from both processes are formulated into |
| | | one matrix equation and solved simultaneously. This robustness results |
| | | from using an unstructured grid with unstructured matrix storage and |
| | | solution schemes.\r\n\r\nMODFLOW-USG also contains an optional |
| | | Newton-Raphson formulation, based on the formulation in MODFLOW-NWT, |
| | | for improving solution convergence and avoiding problems with the |
| | | drying and rewetting of cells. Because the existing MODFLOW solvers |
| | | were developed for structured and symmetric matrices, they were |
| | | replaced with a new Sparse Matrix Solver (SMS) Package developed |
| | | specifically for MODFLOW-USG. The SMS Package provides several methods |
| | | for resolving nonlinearities and multiple symmetric and asymmetric |
| | | linear solution schemes to solve the matrix arising from the flow |
| | | equations and the Newton-Raphson formulation, |
| | | respectively.\r\n\r\nDocumentation for MODFLOW-USG\r\nPanday, Sorab, |
| | | Langevin, C.D., Niswonger, R.G., Ibaraki, Motomu, and Hughes, J.D., |
| | | 2013, MODFLOW-USG version 1: An unstructured grid version of MODFLOW |
| | | for simulating groundwater flow and tightly coupled processes using a |
| | | control volume finite-difference formulation: U.S. Geological Survey |
| | | Techniques and Methods, book 6, chap. A45, 66 p., |
| | | https://doi.org/10.3133/tm6A45", |
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| "approval_status": "approved", | | "approval_status": "approved", |
| "created": "2025-02-26T23:11:51.432459", | | "created": "2025-02-26T23:11:51.432459", |
| "description": "Subsidence data from the Texas Water Development | | "description": "Subsidence data from the Texas Water Development |
| Board", | | Board", |
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| "name": "MODFLOW-USG Version 1.5 program, source code, user | | "name": "MODFLOW-USG Version 1.5 program, source code, user |
| guides, and example problems", | | guides, and example problems", |
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