Name of program: Scoot
Type of program: 2D elastodynamic finite difference with frictional fault
Author: D. Joe Andrews
Institution: U.S. Geological Survey
Program's heritage (ie name and author of predecessor code if any):
Actively being further developed (y/n): y
Language: Fortran
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2d (y/n): y
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3d (y/n): n
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Elastic full space (y/n): y
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Elastic half space (y/n): y
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Layered elastic (y/n): y
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Viscoelastic half space (y/n): n
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Layered viscoelastic (y/n): n
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Maximum number of faults: 5
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Forward model (y/n): y
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Inversion capability (y/n): n
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Type of inversion:
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Finite element ability (y/n): n
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Boundary constraints:
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Automatic mesh generation: n
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Includes self gravitation (y/n): n
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Quasi-static failure criteria (y/n): y
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User defined failure criteria (y/n): y
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Hardwired failure criteria (eg Coulomb): y
(includes slip-weakening friction and rate-state friction.)
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Dynamic solution (y/n): y
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Includes waves (y/n): y
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Highest resolved frequency: 100 (or more) times frequency of
longest wavelength in grid
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Includes inertia (y/n): y
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Are there accompanying utilities (y/n): n
Is it one main program or several programs that
communicate via scripts, files, and pipes? one program
If it is several programs, please give a 1 line description
of the major players.
Input format description:
Output format description: Modified for each problem
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Is this code available to interested researchers (y/n): y
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Executable available (y/n): n
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Type of machine:
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Source available (y/n): y
Please describe what you consider to be the important features of
this code in a paragraph or two.
See references. The fault boundary condition,
the "Traction at Split Nodes" method, is described and compared with
other methods in "Test of two fault boundary conditions in finite
difference calculations," BSSA, 1999, in press.
References describing the algorithms or results from use:
- BSSA 63, 1375-1391, 1973
- BSSA 65, 163-182, 1975
- JGR 81, 3575-3582, 1976
- JGR 81, 5679-5687, 1976
- JGR 102, 553-571, 1997
- BSSA 88, 1085-1094, 1998
- BSSA, in press, 1999