222 lines
8.9 KiB
Text
222 lines
8.9 KiB
Text
#------------------------------------------------------------------------
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# Domain File
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# Original Author(s): Roberto Padilla-Hernandez,Douglas Gaer
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# Alex Gibbs, Pablo Santos,Tony Freeman
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# File Creation Date: 06/01/2012
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# Date Last Modified: 11/08/14 by alex.gibbs@onaa.gov
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#
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# Version control: 1.33
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#
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# Support Team:
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#
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# Contributors:
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#
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# -----------------------------------------------------------------------
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# ---------------------- Description and Details ------------------------
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# -----------------------------------------------------------------------
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#
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# File used to setup a geographical domain for SWAN and WW3
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#
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# -----------------------------------------------------------
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#========================================================================
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# MFR =
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# GEOGRAPHICAL DOMAIN, GEOGRAFICAL RESOLUTION AND OUTPUT TIME STEP =
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#========================================================================
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export SITEID="MFR"
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export REGIONID="WR"
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export NELAT="44.45"
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export NELON="-123.65"
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export SWLAT="41.00"
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export SWLON="-127.30"
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export RES="2.0"
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export TSTEP="3"
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#
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#========================================================================
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# NESTED GRID CONFIGURATION =
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# These nested grids are non-telescopic grids i.e all of them are =
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# nested in the main grid, and get the boundary conditions only from it =
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# =
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#========================================================================
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# NESTGRIDS: Number of nested grids, if = 0, nested grids and
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# location numbers below will be ignore regardless of input specifications
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#
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# STATN=STA for STATIONARY RUNS, STAT=NON for NON-STATIONARY RUNS
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# The default values is NONstationary for CG1 and STAtionary for the
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# nested grids. Change this only if you know what you are doing.
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# You can choose STA or NON for a particular nested grid.
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#
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export NESTGRIDS="4"
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export NESTINCG1="YES"
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#
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# Coos and Winchester Bays, CG2: [43.15 -124.70 43.75 -124.10]
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export NELATN1="43.75"
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export NELONN1="-124.10"
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export SWLATN1="43.15"
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export SWLONN1="-124.70"
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export RESN1=".4"
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export TSTEPN1="3"
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export STATN1="NON"
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#
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# Cape Blanco, CG3: [42.2167 -125.10 43.0333 -124.25]
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export NELATN2="43.0333"
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export NELONN2="-124.25"
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export SWLATN2="42.2167"
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export SWLONN2="-125.10"
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export RESN2=".5"
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export TSTEPN2="3"
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export STATN2="NON"
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#
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# Brookings, CG4: [42.0 -124.45 42.15 -124.1833]
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export NELATN3="42.15"
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export NELONN3="-124.1833"
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export SWLATN3="42.0"
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export SWLONN3="-124.45"
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export RESN3=".3"
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export TSTEPN3="3"
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export STATN3="NON"
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#
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# Wind-only domain
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export NEST4INCG1="NO"
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export NELATN4="44.45"
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export NELONN4="-123.65"
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export SWLATN4="41.00"
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export SWLONN4="-127.30"
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export RESN4="5.0"
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export TSTEPN4="3"
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export STATN4="NON"
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#
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#========================================================================
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# SPECTRA OUTPUT LOCATIONS =
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#========================================================================
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# Specta points defined as space delimited list of:
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# "name1:lat1:lon1 name2:lat2:lon2 name3:lat3:lon3 name4:lat4:lon4 name5:lat5:lon5 ...."
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#
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export SPECPOINTS="46015:42.764:-124.832 46027:41.850:-124.381 46229:43.767:-124.549"
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#
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#========================================================================
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# WAVE TRACKING (and WAVE PARTITION) ON/OFF =
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# SET: SUBDOMFRN, GEOGRAPH RESOL and TOLERANCE WAVETRACK PARAMETERS =
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#========================================================================
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# IF WAVE TRACKING IS REQUIRED THEN WVTRCK="ON", OTHER WISE SET IT AS "OFF"
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# IF WVTRCK IS "ON", ADDTIONAL INFORMATION IS REQUIRED, SEE BELOW
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#
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export WVTRCK="ON"
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#
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# IF WAVE TRACKING IS REQUIRED EXACTLY OVER THE COMPUTATIONAL GRID AND SAME SPATIAL
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# RESOLUTION: SET WVTONCG="1"
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# IF USER WANTS TO CHANGE ANYONE OF THE PARAMETERS THEN WVTONCG="0" AND USER MUST GIVE
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# ALL INFORMATION FOR THE DOMAIN OR SUBDOMAIN AND GEOGRAPHICAL RESOLUTION.
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# BE CAREFULL, IF THERE IS ANY SPECTRAL OUTPUT LOCATIONS OUT OF THE NEW (REDUCED) DOMAIN
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# FOR WAVE TRACKING NWPS WILL ABORT.
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# (This will be change in a new version, the user can get 1d-spectra but not g-h plots).
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export WVTONCG="0"
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export NELATWT="44.45"
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export NELONWT="-123.65"
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export SWLATWT="41.00"
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export SWLONWT="-127.30"
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export GEORESWT="3.0"
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#
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# PARAMETERS FOR TRACKING ALGORITHM for WVTONCG=0 or =1 THIS IS ALWAYS READ
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# *CAUTION* CHANGE THEM ONLY IF YOU KNOW WHAT YOU ARE DOING
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# RECOMENDED VALUES WVTRKPA="10. 1. 0.25 0.1 10. 1."
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# dirKnob, perKnob, hsKnob, wetPts, dirTimeKnob, tpTimeKnob
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export WVTRKPA="10. 1. 0.25 0.1 10. 1."
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#
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#========================================================================
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# CURRENTS DEFINITION (SEE SWAN MANUAL) =
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#========================================================================
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#export CURRL1="INPGRID CUR ............................."
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#export CURRL2="READINP CUR ............................."
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#
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#========================================================================
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# BOUNDARY CONDITIONS (SEE SWAN MANUAL) =
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#========================================================================
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# IF BOUNDARY CONDITIONS WILL BE USED then BOUNDCOND=1, Otherwise =0;
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# Setting up BOUNDCOND here to zero will permanently disable BCs.
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# If you leave it as 1 the user will still have the option to disable
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# them from the interactive Run_NWPS GUI.
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#
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export BOUNCOND="1"
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export FTPPAT1="multi_1"
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export FTPPAT1B="multi_1"
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export FTPPAT2="NW-MFR"
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export NFTPATTEMPTS="3"
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export WAVECPS="multi_1.NW-MFR51.spec.swan,multi_1.NW-MFR58.spec.swan"
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#
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# THE FOLLOWING LINES MUST BE COMMENTED. IF YOU ADD BOUNDARY COMMAND LINES FOR YOUR
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# DOMAIN, ADD THEM WITH THE "#" AS A FIRST CHARACTER, IF YOU DECIDE NOT TO USE BOUNARY
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# CONDITIONS (BOUNCOND="0") THEY WILL REMAIN AS A COMMENTED LINES. IF YOU DECIDE TO USE
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# BOUNDARY CONDITIONS (BOUNCOND="1") NWPS WILL INCLUDE THE INFORMATION IN THE ACTUAL
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# INPUT FILES WITH NOT COMMENT CHARACTER
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#
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#$BOUNDARY COMMAND LINES
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#BOUN SEG XY 232.70 41.00 232.70 44.45 VAR FILE 0.00 'multi_1.NW-MFR51.spec.swan' 1 &
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#0.50 'multi_1.NW-MFR52.spec.swan' 1 &
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#1.00 'multi_1.NW-MFR53.spec.swan' 1 &
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#1.50 'multi_1.NW-MFR54.spec.swan' 1 &
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#2.00 'multi_1.NW-MFR55.spec.swan' 1 &
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#2.50 'multi_1.NW-MFR56.spec.swan' 1 &
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#3.00 'multi_1.NW-MFR57.spec.swan' 1 &
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#3.45 'multi_1.NW-MFR58.spec.swan.cp' 1
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#$
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#BOUN SEG XY 232.70 44.45 235.70 44.45 VAR FILE 0.00 'multi_1.NW-MFR58.spec.swan' 1 &
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#0.50 'multi_1.NW-MFR59.spec.swan' 1 &
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#1.00 'multi_1.NW-MFR60.spec.swan' 1 &
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#1.50 'multi_1.NW-MFR61.spec.swan' 1 &
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#2.00 'multi_1.NW-MFR62.spec.swan' 1 &
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#2.50 'multi_1.NW-MFR63.spec.swan' 1 &
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#3.00 'multi_1.NW-MFR64.spec.swan' 1
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#$
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#BOUN SEG XY 232.70 41.00 235.70 41.00 VAR FILE 0.00 'multi_1.NW-MFR51.spec.swan.cp' 1 &
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#0.50 'multi_1.NW-MFR70.spec.swan' 1 &
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#1.00 'multi_1.NW-MFR69.spec.swan' 1 &
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#1.50 'multi_1.NW-MFR68.spec.swan' 1 &
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#2.00 'multi_1.NW-MFR67.spec.swan' 1 &
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#2.50 'multi_1.NW-MFR66.spec.swan' 1 &
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#3.00 'multi_1.NW-MFR65.spec.swan' 1
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#$END BOUNSEG
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#
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#========================================================================
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# RIP CURRENT PROGRAM (SEE NWPS MANUAL) =
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#========================================================================
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# IF RIP CURRENT PROGRAM WILL BE RUN, then RIPCONT=1, Otherwise =0;
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# Setting up RIPCONT here to zero will permanently disable RIP program.
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#
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export RIPPROG="0"
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export RIPDOMAIN="CG2"
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export RIPCONT="5m"
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#
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#___________________________________________________________________________
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# RAY Section: Define a pair of rays to drop data out along critical contours
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# for rip current program.
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#
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# Example: for data output every 2km along a 5m bathy contour
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#
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# RAY 'rayname' xp yp xq yq int xp yp xq yq
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#
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# RAY 'ray1' 282.85 34.628 282.85 34.62 2000 283.00 34.655 283.00 34.62
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#
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# ISOLINE '5mcont' 'ray1' BOTtom 10
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# TABLE '5mcont' HEAD '5mtable' HSIGN TPS PDIR OUTPUT 20110825.1200 3.0 HR
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#_____________________________________________________________________________
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#
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# THE FOLLOWING LINES MUST BE COMMENTED. IF YOU ADD RIP COMMAND LINES FOR YOUR
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# DOMAIN, ADD THEM WITH THE "#" AS A FIRST CHARACTER, IF YOU DECIDE NOT TO USE RIP
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# CURRENTS (RIPCONT="0") THEY WILL REMAIN AS A COMMENTED LINES. IF YOU DECIDE TO USE
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# BOUNDARY CONDITIONS (BOUNCOND="1") NWPS WILL INCLUDE THE INFORMATION IN THE ACTUAL
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# INPUT FILES WITH NOT COMMENT CHARACTER
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# POIN '5mcont' 279.887 25.8725
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#
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#$RIP LINES
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#$ Ray for 5m and 20m contour data.
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#$
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#RAY 'ray1' 288.80 41.95 289.68 41.95 100 288.80 43.15 289.68 43.15
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#ISOLINE '5mcont' 'ray1' BOTtom 5
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#TABLE '5mcont' HEAD '5m_contour_CG2' TIME XP YP HSIGN TPS DIR DSPR VEL WATL WIND OUTPUT 20141030.0000 1.0 HR
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#$
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#RAY 'ray2' 288.80 41.95 289.68 41.95 100 288.80 43.15 289.68 43.15
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#ISOLINE '20mcont' 'ray1' BOTtom 20
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#TABLE '20mcont' HEAD '20m_contour_CG2' TIME XP YP HSIGN TPS DIR DSPR VEL WATL WIND OUTPUT 20141030.0000 1.0 HR
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#$
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#$END RIP
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#
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