Adjust Head at Estry Interface
Apply Wave Radiation Stresses
Apply Wind Stresses
BC Control File
BC Database
BC Event Name
BC Event Text
Bed Resistance Values
Calibration Points MI File
Cell Wet/Dry Depth
Cell Side Wet/Dry Depth
Cell Size
Check Inside Grid
Check MI Save Date
Check MI Save Ext
CSV Time
Depth/Ripple Height Factor Limit
Display Water Level
End 2D Domain
End Time
ESTRY Control File
Excel Start Date
Extrapolate Heads at Flow Boundaries
First Sweep Direction
Free Overfall
Free Overfall Factor
Froude Check
Froude Depth Adjustment
Geometry Control File
Global FC Ch Factor
Global Weir Factor
HX ZC Check
Instability Water Level
Latitude
Log Folder
Map Output Data Types
Map Output Format
Map Output Interval
Mass Balance Output
MI Projection
Null Cell Checks
Number Iterations
Oblique Boundary Alignment
Oblique Boundary Method
Output Folder
Recalculate Chezy Interval
Read File
Read Materials File
Read MI FC
Read MI GLO
Read MI IWL
Read MID IWL
Read MI LP
Read MI PO
Read Restart File
Screen/Log Display Interval
Set IWL
Shallow Depth Weir Factor Cut Off Depth
Shallow Depth Weir Factor Multiplier
Snap Tolerance
Start 2D Domain
Start Map Output
Start Time
Start Time Series Output
Start Wind Output at Time
Store Maximums and Minimums
Supercritical
SX ZC Check
Time Series Output Interval
Timestep
Timestep During Warmup
Unused HX and SX Connections
Viscosity Coefficient
Viscosity Formulation
Warmup Time
Water Level Checks
Wave Period
Wetting and Drying
Wind Output Interval
Write Check Files
Write Empty MI Files
Write PO Online
Write Restart File at Time
Write Restart File Interval
Zero Negative Depths in SMS
A.1Geographic Reference Commands (.tcf)
Latitude == [ {0} | ] 8
MI Projection == [ <.mif file> |
] 8
Snap Tolerance == [ {0.001} | ] 9
BC Control File == <.tbc_file> 17
Check MI Save Date == [ {ERROR} | WARNING | OFF ] 17
Check MI Save Ext == [ {.tab} | ] 17
End 2D Domain 18
ESTRY Control File [ {} | Auto] == <.ecf_file> 18
Geometry Control File == <.tgc_file> 18
Log Folder == 18
Output Folder == 18
Read File == 18
Start 2D Domain == [ {} | <2d_domain_name> ] 19
Write Check Files == [ | {OFF} ] 19
Write Empty MI Files == [ {} | ] 20
End Time == 28
Number Iterations == [ {2} | ] 28
Start Time == 28
Timestep == 28
Timestep During Warmup == [ {timestep} | ] 29
Warmup Time == [ {0} | ] 29
Calibration Points MI File == <.mif/.mid_file> 37
Display Water Level == , 37
Map Output Data Types == [ d E F {h} q R SS t {V} Z1 Z2 Z3 ZH ] 37
Map Output Format == [ {SMS} | SMS WITH LAND CELLS | RMA2 ] 38
Map Output Interval == 38
Mass Balance Output == [ ON | {OFF} ] 38
Read MI GLO == <.mif/.mid_file > 39
Screen/Log Display Interval == [ {1} | ] 39
Start Map Output == 39
Store Maximums and Minimums == [ ON | ON MAXIMUMS ONLY | {OFF} ] 39
Zero Negative Depths in SMS == [ {ON} | OFF ] 40
Bed Resistance Values == [ {MANNING N} | MANNING M | CHEZY ] 48
Depth/Ripple Height Factor Limit == [ {10} | ] 48
Read Materials File == 48
Recalculate Chezy Interval == [ {0} | ] 49
Global FC Ch Factor == [ {0.8} | ] 57
Read MI FC == <.mif/.mid_file> 57
CSV Time == [ {DAYS} | HOURS ] 65
Excel Start Date == 65
Read MI LP == <.mif/.mid_file> 65
Read MI PO == <.mif/.mid_file> 65
Start Time Series Output == 66
Time Series Output Interval == 66
Write PO Online == [ ON | {OFF} ] 66
Read MI IWL == <.mif/.mid_file> 74
Read MID IWL == <.mid_file> 74
Set IWL == 74
Read Restart File == <.trf_file> 82
Write Restart File at Time == 82
Write Restart File Interval == [ {0} | ] 83
Cell Side Wet/Dry Depth == [ {0.03} | ] 91
Cell Wet/Dry Depth == [ {0.05} | ] 91
HX ZC Check == [ {ON} | OFF ] 91
SX ZC Check == [ {ON} | OFF ] 92
Wetting and Drying == [ {ON} | ON NO SIDE CHECKS | OFF ] 92
Free Overfall == [ {ON} | ON WITHOUT WEIRS | OFF ] 100
Free Overfall Factor == [ {0.8} | ] 101
Froude Check == [ {1} | ] 101
Froude Depth Adjustment == [ {ON} | OFF ] 101
Global Weir Factor == [ {1.0} | ] 101
Shallow Depth Weir Factor Cut Off Depth == [ {0} | ] 101
Shallow Depth Weir Factor Multiplier == [ {1} | ] 102
Supercritical == [ {ON} | OFF | PRE 2002-11-AD ] 102
Viscosity Coefficient == [ {1} | ] 110
Viscosity Formulation == [ {CONSTANT} | SMAGORINSKY ] 110
Cell Size == 118
First Sweep Direction == [ AUTOMATIC | {POSITIVE} | NEGATIVE ] 118
Instability Water Level == [ {see_below} | ] 126
Water Level Checks == [ {ON} | OFF ] 126
BC Database == <.csv_file> 134
BC Event Name == 134
BC Event Text == 135
Adjust Head at Estry Interface == [ {ON} | ON VARIABLE | OFF ] 143
Check Inside Grid == [ {ERROR} | WARNING | OFF ] 143
Extrapolate Heads at Flow Boundaries == [ ON | {OFF} ] 143
Null Cell Checks == [ ON | {OFF} ] 144
Oblique Boundary Alignment == [ {NEAREST TO LINE} | CENTRE TO CENTRE ] 144
Oblique Boundary Method == [ {ON} | ON METHOD 2 | OFF ] 144
Unused HX and SX Connections == [ {ERROR} | WARNING ] 145
Apply Wind Stresses == [ ON | ON VARIABLE | {OFF} ] 153
Start Wind Output at Time == 153
Wind Output Interval == 153
Apply Wave Radiation Stresses == [ ON | {OFF} ] 161
Wave Period ==
161
MI Projection ==
9
Snap Tolerance == [ {0.001} | ] 9
Check MI Save Date == [ {ERROR} | WARNING | OFF ] 17
Check MI Save Ext == [ {.tab} | ] 17
CSV Format == [ HORIZONTAL | {VERTICAL} ] 17
CSV Time == [ {DAYS} | HOURS ] 17
Log Folder == 17
Output Folder == 18
Read File == 18
Write CSV Online == [ ON | {OFF} ] 18
Write Empty MI Files == [ {} | ] 18
Write Check Files == [ | {OFF} ] 19
Bridge Flow == [ {Method A} | Method B ] 27
Culvert Flow == [ Method A | {Method B} ] 27
End Time == 27
Froude Check == [ {1} | ] 28
Froude Depth Adjustment == [ {ON} | OFF ] 28
Head Rate Creep Factor == [ | {1.2} ] 28
Head Rate Limit == [ ON | {OFF} | ] 28
Head Rate Limit Minimum == [ | {0.001} ] 28
Start Time == 28
Structure Losses == [ ADJUST | {FIX} ] 29
Timestep == 29
Vel Rate Creep Factor == [ | {1.2} ] 29
Vel Rate Limit == [ | {0.2} ] 29
Vel Rate Limit Minimum == [ | {0.0001} ] 29
Order Output == [ {ON} | OFF ] 38
Output Interval [ {} | (s) ] == 38
Output Times Same as 2D == [ {ON} | OFF ] 38
Read MI WLL == <.mif/.mid_file> 39
Read MI WLL Points == <.mif/.mid_file> 39
Start Output == 39
WLL Additional Points == [ {0} | ] 39
WLL Adjust XS Width == [ {ON} | OFF ] 39
WLL Approach == [ {Method A} | Method B ] 39
Apply All Inverts == [ ON | {OFF} ] 48
Conveyance Calculation == [ {CHANGE IN RESISTANCE} | ALL PARALLEL ] 48
Create Nodes == [ {ON} | OFF ] 48
Depth Limit Factor == [ {1} | ] 49
Flow Area == [ {EFFECTIVE} | TOTAL ] 49
M11 Network == <.nwk11_file> 50
Minimum NA == [ {0} | ] 50
Momentum Equation == [ PRE 2003-08-AD ] 50
Pit Channel Offset == [ {10} | ] 50
Read MI Network == <.mif/.mid_file> 50
Read MI Table Links == <.mif/.mid_file> 50
Read Materials File == 51
Relative Resistance == [ {RELATIVE} | MATERIAL ] 51
S Channel Approach == [ PRE 2004-06-AA ] 51
Storage Above Structure Obvert == [ {CHANNEL WIDTH} | ] 51
Trim XZ Profiles == [ ON | {OFF} ] 52
XS Database == 52
[ BG | CS | NA | VG ].... ! Fixed Field Flags 60
BG Data == 60
CS Data == 60
NA Data == 61
VG Data == 61
Read MI IWL == <.mif/.mid_file> 69
Set IWL == 69
BC Database == <.csv_file> 77
BC Event Name == 77
BC Event Text == 78
EB Data == 78
Read MI BC == <.mif/.mid_file> 78
Cell Size == 9
Grid Size (N,M) == , 9
Grid Size (X,Y) == , 9
Orientation == , 9
Orientation Angle == 10
Origin == , 10
Read MI Location == <.mif/.mid_file> 10
Read TGA == <.tga_file> 18
Read TGF == <.tgf_file> 18
External Bndy == , , , 27
Read MI [ MAT | IWL | CnM | FRIC | WrF | FLC ] == 28
Read MI Code [ {} | BC ] == 28
Read MID [ CODE | MAT | IWL | CnM | FRIC | WrF | FLC ] == 28
Read MID Grid == 29
Set [ CODE | MAT | IWL | CnM | FRIC | WrF ] == 29
Write MI Domain == <.mif/.mid_file> 29
Write MI Grid == <.mif/.mid_file> 29
Allow Dangling Z Lines == [ ON | {OFF} ] 38
Default Land Z == 38
Interpolate ZC [ {} | ALL ] [ {} | LOWER ] 38
Interpolate [ ZHC | ZUVC ] [ {} | ALL ] [ {} | AFTER ] 39
Pause When Polyline Does Not Find Zpt == [ ON | {OFF} ] 39
Read MI Z Line [ {} | RIDGE or MAX | GULLY or MIN | HX ] [ {} | CC ] [ {} | THICK ] [ {} | ADD ] == 40
Read MI Zpts [ {} | ADD | MAX | MIN ] == 41
Read MID Zpts [ {} | ADD | MAX | MIN ] == 41
Set Zpt == 42
Write MI Zpts == 42
ZC == MIN(ZU,ZV) 42
Read File == 51
Stop 51
BC Database == <.csv_file> 9
BC Event Name == 9
BC Event Text == 10
Global Rainfall Area Factor == [ {1.0} | ] 10
Global Rainfall BC == 10
Global Rainfall Continuing Loss == [ {0} | ] 10
Global Rainfall Initial Loss == [ {0} | ] 10
Read MI BC == <.mif/.mid_file> 10
Read MI SA [ {} | Rainfall ] == <.mif/.mid_file> 11
Unused HX and SX Connections == [ {ERROR} | WARNING ] 11
Latitude == [ {0} | ]
(Optional)
Sets the latitude used for calculating the Coriolos term in the shallow water equations. Negative value indicates south of the equator. A zero value disables the Coriolos term.
MI Projection == [ <.mif file> |
]
(Optional but recommended)
Sets the geographic projection for all GIS input and output. If this command is omitted, TUFLOW searches for a file “Header.mif” in each folder it opens GIS files, and extracts the projection from this file. The “Header.mif” file is any GIS layer in the correct projection exported in MIF/MID format. If no “Header.mif” file is found , non-earth coordinates are assumed.
Note: The projection must be Cartesian and in meters.
As of Build 2003-12-AD, a mif file can be specified and the projection line is extracted from this file, and is the referred approach than that described below.
To enter a projection line from a mif file, follow these steps:
In a GIS, create or open a layer in the Cartesian projection to be used for the model. For non-geographic models (eg. a test model), use the Non-Earth (meters) projection.
Export the layer in MIF/MID format.
Open the .mif file in a text editor, copy the whole line starting with “CoordSys” (usually the 4th or 5th line) and paste after “MI Projection ==” in the .tcf file.
Example:
MI Projection == CoordSys Earth Projection 8, 13, "m", 153, 0, 0.9996, 500000, 10000000 Bounds (-7745874.38492, 1999.40969607) (8745874.38492, 19998000.5903)
Note: All GIS layers read by TUFLOW MUST USE this projection. The projection must be a Cartesian based projection, not a spherical projection such as Latitude/Longitude.
Snap Tolerance == [ {0.001} | ]
(Optional)
Sets the search distance in metres for detecting whether two GIS objects are connected (snapped). Introduced in Build 2005-05-AN.
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