Property:Describe output parameters model

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Showing 20 pages using this property.
C
Chronostrat plots, maps, cross-sections, lithofacies thickness distributions  +
G
Cofactor matrix (*.mtx sparse matrix file; ASCII) Flexural response map (ASCII)  +
C
Compacted sediment porosity  +
M
Compute all carbonate system variables  +
S
Constant terminal settling velocity at STP  +
E
Critical shear stress for entrainment of a noncohesive grain from a mixed size-density bed  +
Critical shear stress for entrainment of a noncohesive grain from a homogenous bed  +
S
Cross-sectional average suspended load transport rates  +
F
Cross-sectional mean flow velocities, flow depths, bed shear stresses as a function of along-channel distance.  +
1
Current thickness, velocity, and D50 for active layer and in suspension.  +
B
Currents, salinity, temperature, ... all model variables.  +
C
DEM, Flow patterns, Inundation, Grainsize and others  +
D
DLBRM output includes, for every cell in the watershed grid, surface runoff to surface storage, infiltration to USZ, ET, ETP, percolation from USZ to LSZ, interflow from LSZ to surface storage, deep percolation from LSZ to groundwater storage, groundwater flow from groundwater storage to surface storage, surface moisture storage, USZ, and LSZ moisture storages, groundwater storage, and lateral flows from storages to adjacent cells for the surface (channel outflow), USZ, LSZ, and groundwater (Changsheng He and Thomas E. Croley II, 2007).  +
Dakotathon produces no output parameters; instead, it creates the standard Dakota output files '''dakota.out''' and '''dakota.dat'''.  +
K
Dampening effects of vegetation and snow on temperature Mean annual active layer thickness Mean annual temperature at the permafrost ground surface  +
B
Debris flow deposit thickness  +
W
Deep water significant wave height and period at each point under a hurricane.  +
H
Default: 3D Temperature and salinity field 3D Velocities 2D Sea Surface Height  +
T
Depend on different modules that are using, it can produce hydrodynamics, such as water velocity and depth; vertical density (3D); temperature plumes and salt wedge; water quality; sediment concentration and transport; underground water velocity field; wave parameters;  +
G
Depending on the flags indicated in the input file, typical flow quantities are stored to the file at the given time steps.<br> Velocities, Pressure, Concentration (of the particles).<br> Depending on the problems, some other quantities could be stored too.  +