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Program name | Package id | Status | Status date |
---|---|---|---|
2D-SEEP | NEA-1250/01 | Tested | 03-MAY-1994 |
3D-SEEP | NEA-1250/02 | Tested | 03-MAY-1994 |
Machines used:
Package ID | Orig. computer | Test computer |
---|---|---|
NEA-1250/01 | FACOM M-780 | DEC VAX 6000 |
NEA-1250/02 | FACOM M-780 | DEC VAX 6000 |
2D-SEEP is written for two-dimensional Cartesian or cylindrical coordinate systems. 3D-SEEP is written for all three spatial dimensions and allows the modeling of complex geometrical shapes and complicated pattern of geologic media. The Galerkin finite element method is used. The groundwater flow is modeled by single phase flow governed by Darcy's law and the simplified double porosity model is introduced to consider fractured media.
2D-SEEP solves the heat conductive and convective equation using the Bubnov-Galerkin (up-stream weighting) finite element method. Ground- water flow and heat transport processes are coupled via fluid density and viscosity.
3D-SEEP can handle non-uniform flow regions having irregular boundaries and arbitrary degree of local anisotropy.
Package ID | Status date | Status |
---|---|---|
NEA-1250/01 | 03-MAY-1994 | Tested at NEADB |
NEA-1250/02 | 03-MAY-1994 | Tested at NEADB |
Package ID | Computer language |
---|---|
NEA-1250/01 | FORTRAN-77 |
NEA-1250/02 | FORTRAN-77 |
File name | File description | Records |
---|---|---|
NEA1250_01.001 | Information file | 244 |
NEA1250_01.002 | JCL | 131 |
NEA1250_01.003 | 2D-SEEP Fortran source | 15419 |
NEA1250_01.004 | 2D-SEEP Sample problem input | 348 |
NEA1250_01.005 | 2D-SEEP Sample problem output | 1910 |
File name | File description | Records |
---|---|---|
NEA1250_02.001 | Information file | 94 |
NEA1250_02.002 | JCL | 141 |
NEA1250_02.003 | 3D-SEEP Fortran source | 8099 |
NEA1250_02.004 | 3D-SEEP Sample problem input 1 | 279 |
NEA1250_02.005 | 3D-SEEP Sample problem input 2 | 1914 |
NEA1250_02.006 | 3D-SEEP Sample problem output 1 | 3075 |
NEA1250_02.007 | 3D-SEEP Sample problem output 2 | 9238 |
Keywords: fluid flow, geologic strata, ground water, radioactive waste storage, three-dimensional, two-dimensional.