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# Fort.15 file format: Difference between revisions

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The basic file structure is shown below. Each line of input data is represented by a line containing the input variable name(s). '''Blank lines and headings are only to enhance readability.''' Loops indicate multiple lines of input. | The basic file structure of the [[fort.15 file]] is shown below. Each line of input data is represented by a line containing the input variable name(s). '''Blank lines and headings are only to enhance readability.''' Loops indicate multiple lines of input. | ||

==Model Control== | ==Model Control== |

## Revision as of 20:43, 12 May 2020

The basic file structure of the fort.15 file is shown below. Each line of input data is represented by a line containing the input variable name(s). **Blank lines and headings are only to enhance readability.** Loops indicate multiple lines of input.

## Model Control

IDEN include this line only if IM = 20, 21, 30, 31, or last 6-digit entry is > 4 (e.g., 513115).

for j=1 to NWP

end j loop

Tau0FullDomainMin, Tau0FullDomainMax - include this line only if TAU0 is -5.0.

WTIMINC - Supplemental Meteorological/Wave/Ice Parameters Line

DRAMP - include this line if NRAMP = 0 or 1 - See Ramping for more information

DRAMP, DRAMPExtFlux, FluxSettlingTime - include this line if NRAMP = 2

DRAMP, DRAMPExtFlux, FluxSettlingTime, DRAMPIntFlux - include this line if NRAMP = 3

DRAMP, DRAMPExtFlux, FluxSettlingTime, DRAMPIntFlux, DRAMPElev - include this line if NRAMP = 4

DRAMP, DRAMPExtFlux, FluxSettlingTime, DRAMPIntFlux, DRAMPElev, DRAMPTip - include this line if NRAMP = 5

DRAMP, DRAMPExtFlux, FluxSettlingTime, DRAMPIntFlux, DRAMPElev, DRAMPTip, DRAMPMete - include this line if NRAMP = 6

DRAMP, DRAMPExtFlux, FluxSettlingTime, DRAMPIntFlux, DRAMPElev, DRAMPTip, DRAMPMete, DRAMPWRad - include this line if NRAMP = 7

DRAMP, DRAMPExtFlux, FluxSettlingTime, DRAMPIntFlux, DRAMPElev, DRAMPTip, DRAMPMete, DRAMPWRad, DUnRampMete - include this line if NRAMP = 8

H0 - include this line if NOLIFA =0, 1

H0, INTEGER, INTEGER, VELMIN - include this line if NOLIFA =2, 3

TAU include this line only if NOLIBF = 0

CF - include this line only if NOLIBF =1

CF, HBREAK, FTHETA, FGAMMA - include this line only if NOLIBF =2

ESLM - include this line only if IM =0, 1, 2

ESLM, ESLC - include this line only if IM =10

## Tidal Information

for k=1 to NTIF

end k loop

end k loop

for k=1 to NBFR

end k loop

NFFR - include this line only if IBTYPE = 2, 12, 22, 32 or 52 in the Grid and Boundary Information File

for k=1 to NFFR

end k loop

for k=1 to NFFR

- ALPHA(k)
- for j=1 to NVEL
- QNAM(k,j), QNPH(k,j) - use this line if IBTYPE = 2, 12, 22 in the Grid and Boundary Information File
- QNAM(k,j), QNPH(k,j), ENAM(k,j), ENPH(k,j) - use this line if IBTYPE = 32 in the Grid and Boundary Information File

- end j loop

end k loop

## Model Output

NOUTE, TOUTSE, TOUTFE, NSPOOLE

for k=1 to NSTAE

- XEL(k), YEL(k) - use these lines if NSTAE is positive. If negative, stations are listed in the elev_stat.151 file

end k loop

NOUTV, TOUTSV, TOUTFV, NSPOOLV

for k=1 to NSTAV

- XEV(k), YEV(k) - use these lines if NSTAV is positive. If negative, stations are listed in the vel_stat.151 file

end k loop

NOUTC, TOUTSC, TOUTFC, NSPOOLC - include this line only if IM =10

NSTAC - include this line only if IM =10

for k=1 to NSTAC

end k loop

NOUTM, TOUTSM, TOUTFM, NSPOOLM - include this line only if NWS is not equal to zero. NSTAM - include this line only if NWS is not equal to zero.

for k=1 to NSTAM

- XEM(k), YEM(k) - use these lines if NSTAM is positive. If negative, stations are listed in the met_stat.151 file

end k loop

NOUTGE, TOUTSGE, TOUTFGE, NSPOOLGE

NOUTGV, TOUTSGV, TOUTFGV, NSPOOLGV

NOUTGC, TOUTSGC, TOUTFGC, NSPOOLGC - include this line only if IM =10

NOUTGW, TOUTSGW, TOUTFGW, NSPOOLGW - include this line only if NWS is not equal to zero.

for k=1 to NFREQ

end k loop

For a 2DDI ADCIRC run that does not use NetCDF, the file ends here. For any ADCIRC run that uses NetCDF, the lines NCPROJ through NCDATE (described at the end of this file format) are required metadata and must be added at the end of the fort.15 file.

## 3D Model Run

for k=1 to NFEN (include this loop only if IGC = 0, k=1 at bottom, k= NFEN at surface)

end k loop

for k=1 to NFEN (include this loop only if IEVC = 0, k=1 at bottom, k= NFEN at surface)

end k loop

THETA1, THETA2(include this line only if IEVC = 50 or 51)

I3DSD,TO3DSDS,TO3DSDF,NSPO3DSD

for k=1 to NSTA3DD

end k loop

I3DSV,TO3DSVS,TO3DSVF,NSPO3DSV

for k=1 to NSTA3DV

end k loop

I3DST,TO3DSTS,TO3DSTF,NSPO3DST

for k=1 to NSTA3DT

end k loop

I3DGD,TO3DGDS,TO3DGDF,NSPO3DGD

I3DGV,TO3DGVS,TO3DGVF,NSPO3DGV

I3DGT,TO3DGTS,TO3DGTF,NSPO3DGT

The following line will be read in if IM is 21 or 31.

RES_BC_FLAG, BCFLAG_LNM, BCFLAG_TEMP

The following two lines will be read in if RES_BC_FLAG is negative.

The following two lines will be read in if RES_BC_FLAG = 2.

The following two lines will be read in if RES_BC_FLAG = 3.

The following two lines will be read in if RES_BC_FLAG = 4.

RBCTIMEINC, SBCTIMEINC, TBCTIMEINC

BCSTATIM, SBCSTATIM, TBCSTATIM

The following two lines will be read in if RES_BC_FLAG = 3 or 4 and BCFLAG_TEMP is not equal to 0.

The following two lines will be read in only if IM is 21 or 31.

The following lines will be read in only if IDEN is > 0.

The following line will be read in only if IDEN = 3 or 4.

## NetCDF Control

The following lines will be read in only if the NetCDF output or hotstart format is chosen

NCPROJ

NCINST

NCSOUR

NCHIST

NCREF

NCCOM

NCHOST

NCCONV

NCCONT

NCDATE

The following Fortran namelist lines are optional, but if they appear, they must appear at the very end of the fort.15 file.

&metControl WindDragLimit=floatValue, DragLawString='stringValue', rhoAir=floatValue, outputWindDrag=logicalValue /

&timeBathyControl NDDT=integerValue, BTIMINC=floatValue, BCHGTIMINC=floatValue /

&waveCoupling WindWaveMultiplier=floatValue /

&SWANOutputControl SWAN_OutputHS=logicalValue, SWAN_OutputDIR=logicalValue, SWAN_OutputTM01=logicalValue, SWAN_OutputTPS=logicalValue, SWAN_OutputWIND=logicalValue, SWAN_OutputTM02=logicalValue, SWAN_OutputTMM10=logicalValue /

&subdomainModeling subdomainOn=logicalValue/

&wetDryControl outputNodeCode=logicalValue, outputNOFF=logicalValue, noffActive=logicalValue /

&inundationOutputControl inundationOutput=logicalValue0, inunThresh =floatValue /

&TVWControl use_TVW=logicalValue, TVW_file='stringValue', nout_TVW =integerValue, touts_TVW =floatValue, toutf_TVW=floatValue, nspool_TVW =integerValue /