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Welcome to XBeach
revision
date Wed Apr 15 11:42:14 CEST 2015
URL:
**********************************************************
Simulation started: YYYYMMDD hh:mm:ss time zone (UTC)
20150420 09:25:43 +0200
running in: /p/xbeach/skillbed/lastrun/1976_storm_surge/raai6050
General Input Module
MPI version, running on 1 processes
Reading input parameters:
--------------------------------
Physical processes:
XBeach reading from params.txt
cyclic = 0 (no record found, default value used)
swave = 1 (no record found, default value used)
single_dir = 0 (no record found, default value used)
lwave = 1 (no record found, default value used)
flow = 1 (no record found, default value used)
sedtrans = 1 (no record found, default value used)
morphology = 1 (no record found, default value used)
avalanching = 1 (no record found, default value used)
nonh = 0 (no record found, default value used)
gwflow = 0 (no record found, default value used)
ships = 0 (no record found, default value used)
vegetation = 0 (no record found, default value used)
setbathy = 0 (no record found, default value used)
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Grid parameters:
gridform = xbeach (no record found, default value used)
xori = .0000 (no record found, default value used)
yori = .0000 (no record found, default value used)
alfa = .0000 (no record found, default value used)
nx = 843
ny = 0
posdwn = -1.0000
depfile = z.grd
vardx = 1
dx = -1.0000 (no record found, default value used)
dy = -1.0000 (no record found, default value used)
xfile = x.grd
yfile = None specified
thetamin = -180.0000
thetamax = 180.0000
dtheta = 360.0000 Warning: value > recommended value of 20.0000
thetanaut = 0
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Model time parameters:
CFL = .9000
tstop = 151200.0000
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Physical constants:
rho = 1000.0000
g = 9.8100
depthscale = 1.0000 (no record found, default value used)
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Initial conditions:
zsinitfile = None specified
hotstartflow = 0 (no record found, default value used)
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Wave boundary condition parameters:
instat = swan
bcfile = waves.inp
taper = 100.0000 (no record found, default value used)
nmax = .8000 (no record found, default value used)
lateralwave = neumann (no record found, default value used)
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Wave-spectrum boundary condition parameters:
nonhspectrum = 0 (no record found, default value used)
random = 1 (no record found, default value used)
fcutoff = .0000 (no record found, default value used)
nspr = 0 (no record found, default value used)
trepfac = .0100 (no record found, default value used)
sprdthr = .0800 (no record found, default value used)
Tm01switch = 0 (no record found, default value used)
dthetaS_XB = .0000 (no record found, default value used)
wbcversion = 3 (no record found, default value used)
nspectrumloc = 1 (no record found, default value used)
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Flow boundary condition parameters:
front = abs_2d (no record found, default value used)
left = neumann (no record found, default value used)
right = neumann (no record found, default value used)
back = abs_2d (no record found, default value used)
ARC = 1 (no record found, default value used)
order = 2.0000 (no record found, default value used)
carspan = 0 (no record found, default value used)
freewave = 0 (no record found, default value used)
epsi = -1.0000 (no record found, default value used)
nc = 1 (no record found, default value used)
tidetype = velocity (no record found, default value used)
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Tide boundary conditions:
tideloc = 1
zs0file = waterlevel.inp
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Discharge boundary conditions:
disch_loc_file = None specified
disch_timeseries_file = None specified
ndischarge = 0 (no record found, default value used)
ntdischarge = 0 (no record found, default value used)
beta = .1000
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Wave breaking parameters:
break = roelvink2 (no record found, default value used)
gamma = .5500 (no record found, default value used)
alpha = 1.0000 (no record found, default value used)
n = 10.0000 (no record found, default value used)
gammax = 2.0000 (no record found, default value used)
delta = .0000 (no record found, default value used)
fw = .0000 (no record found, default value used)
fwcutoff = 1000.0000 (no record found, default value used)
breakerdelay = 1 (no record found, default value used)
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Roller parameters:
roller = 1 (no record found, default value used)
rfb = 0
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Wave-current interaction parameters:
wci = 0 (no record found, default value used)
hwci = .1000 (no record found, default value used)
cats = 4.0000 (no record found, default value used)
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Flow parameters:
bedfriction = chezy (no record found, default value used)
bedfricfile = None specified
bedfriccoef = 55.0000 (no record found, default value used)
nuh = .1000
nuhfac = 1.0000
smag = 1 (no record found, default value used)
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Coriolis force parameters:
wearth = .0417 (no record found, default value used)
lat = .0000 (no record found, default value used)
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Wind parameters:
rhoa = 1.2500 (no record found, default value used)
Cd = .0020 (no record found, default value used)
windfile = None specified
windv = .0000 (no record found, default value used)
windth = 270.0000 (no record found, default value used)
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Sediment transport parameters:
form = vanthiel_vanrijn
waveform = vanthiel (no record found, default value used)
sws = 1 (no record found, default value used)
lws = 1 (no record found, default value used)
BRfac = 1.0000 (no record found, default value used)
facsl = 1.6000
z0 = .0060 (no record found, default value used)
smax = -1.0000 (no record found, default value used)
tsfac = .1000 (no record found, default value used)
facua = .1000
facSk = .1000 (no record found, default value used)
facAs = .1000 (no record found, default value used)
turbadv = none (no record found, default value used)
turb = bore_averaged (no record found, default value used)
Tbfac = 1.0000 (no record found, default value used)
Tsmin = .5000 (no record found, default value used)
lwt = 0 (no record found, default value used)
betad = 1.0000 (no record found, default value used)
sus = 1 (no record found, default value used)
bed = 1 (no record found, default value used)
bulk = 1
facDc = 1.0000 (no record found, default value used)
fallvelred = 0 (no record found, default value used)
dilatancy = 0 (no record found, default value used)
reposeangle = 30.0000 (no record found, default value used)
bdslpeffmag = roelvink_total (no record found, default value used)
bdslpeffini = none (no record found, default value used)
bdslpeffdir = none (no record found, default value used)
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Bed composition parameters:
ngd = 1 (no record found, default value used)
nd = 3 (no record found, default value used)
por = .4000 (no record found, default value used)
D50 = .0002
D90 = .0003
rhos = 2650.0000 (no record found, default value used)
dzg = .1000 (no record found, default value used)
dzg1 = .1000 (no record found, default value used)
dzg2 = .1000 (no record found, default value used)
dzg3 = .1000 (no record found, default value used)
sedcal = 1.0000 (no record found, default value used)
ucrcal = 1.0000 (no record found, default value used)
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Morphology parameters:
morfac = 1.0000
morfacopt = 1 (no record found, default value used)
morstart = .0000
morstop = 151200.0000 (no record found, default value used)
wetslp = .3000 (no record found, default value used)
dryslp = 1.0000 (no record found, default value used)
hswitch = .1000 (no record found, default value used)
dzmax = .0500
struct = 0 (no record found, default value used)
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Output variables:
timings = 1 (no record found, default value used)
tunits = None specified
tstart = .0000
tint = 3600.0000
tsglobal = None specified
tintg = 3600.0000 (no record found, default value used)
tspoints = None specified
tintp = 3600.0000 (no record found, default value used)
tsmean = None specified
tintm = 151200.0000 (no record found, default value used)
nglobalvar = 1
nglobalvar: Will generate global output for variable:zb
npoints = 0 (no record found, default value used)
nrugauge = 0 (no record found, default value used)
npointvar = 0 (no record found, default value used)
nrugdepth = 1 (no record found, default value used)
rugdepth = .0000 (no record found, default value used)
nmeanvar = 0 (no record found, default value used)
ncross = 0 (no record found, default value used)
outputformat = fortran (no record found, default value used)
ncfilename = None specified
netcdf output to:xboutput.nc
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Output projection:
projection = None specified
rotate = 1 (no record found, default value used)
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Wave numerics parameters:
scheme = upwind_2 (no record found, default value used)
snells = 1 (no record found, default value used)
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Flow numerics parameters:
eps = .0050 (no record found, default value used)
eps_sd = .5000 (no record found, default value used)
umin = .0000 (no record found, default value used)
hmin = .2000
secorder = 0 (no record found, default value used)
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Sediment transport numerics parameters:
thetanum = 1.0000 (no record found, default value used)
sourcesink = 0 (no record found, default value used)
cmax = .1000 (no record found, default value used)
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Bed update numerics parameters:
frac_dz = .7000 (no record found, default value used)
nd_var = 2 (no record found, default value used)
split = 1.0100 (no record found, default value used)
merge = .0100 (no record found, default value used)
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MPI parameters:
mpiboundary = auto (no record found, default value used)
mmpi = 2 (no record found, default value used)
nmpi = 4 (no record found, default value used)
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Finished reading input parameters
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Warning: 2D absorbing boundary condition [front=abs_2d] reduces to a
1D absorbing boundary condition [front=abs_1d] in
1D mode [ny=0]
Warning: 2D absorbing boundary condition [back=abs_2d] reduces to a
1D absorbing boundary condition [back=abs_1d] in
1D mode [ny=0]
Unknown, unused or multiple statements of parameter SWTABLE in params.txt
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Building Grid and Bathymetry
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processor grid: 1 X 1
Initializing .....
readtide: reading tide time series from waterlevel.inp ...
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Initializing spectral wave boundary conditions
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MPI implementation:
Distribution of matrix on processors
proc is lm js ln
0 1 844 1 1
proc left right top bot
0 T T T T
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computational domains on processors
proc icgs icge jcgs jcge icls icle jcls jcle
0 1 844 1 1 1 844 1 1
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Fortran outputformat
Setting up boundary conditions
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Calculating spectral wave boundary conditions
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Reading spectrum at location 1
Reading from SWAN file nh6000.loct032.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 2.64 m
Trep = 5.71 s
Mean dir = 251.24 degN
Overall Trep from all spectra calculated: 5.71 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00001.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00001.bcf ...
file done
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Spectral wave boundary conditions complete
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Boundary conditions complete, starting computation
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Calculating spectral wave boundary conditions
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Reading spectrum at location 1
Reading from SWAN file nh6000.loct033.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.21 m
Trep = 6.18 s
Mean dir = 262.22 degN
Overall Trep from all spectra calculated: 6.18 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
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Writing wave energy to E_series00002.bcf ...
file done
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00002.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct034.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.21 m
Trep = 6.53 s
Mean dir = 277.88 degN
Overall Trep from all spectra calculated: 6.53 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00003.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00003.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 14.3 percent complete. Average dt 0.184 seconds
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct035.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.36 m
Trep = 6.84 s
Mean dir = 288.40 degN
Overall Trep from all spectra calculated: 6.84 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00004.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00004.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 21.4 percent complete. Average dt 0.170 seconds
Time remaining 54 hours and 43 minutes
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct036.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.57 m
Trep = 7.15 s
Mean dir = 293.48 degN
Overall Trep from all spectra calculated: 7.15 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00005.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00005.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 28.6 percent complete. Average dt 0.191 seconds
Time remaining 46 hours and 28 minutes
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct037.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.73 m
Trep = 7.58 s
Mean dir = 299.94 degN
Overall Trep from all spectra calculated: 7.58 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00006.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00006.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct038.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.63 m
Trep = 7.90 s
Mean dir = 307.75 degN
Overall Trep from all spectra calculated: 7.90 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00007.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00007.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct039.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 3.11 m
Trep = 7.49 s
Mean dir = 314.05 degN
Overall Trep from all spectra calculated: 7.49 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00008.bcf ...
file done
Calculating primary wave interaction
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Warning: shallow water so long wave variance is reduced using par%nmax
Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00008.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 50.0 percent complete. Average dt 0.171 seconds
Time remaining 31 hours and 44 minutes
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct040.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 2.54 m
Trep = 7.36 s
Mean dir = 320.35 degN
Overall Trep from all spectra calculated: 7.36 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00009.bcf ...
file done
Calculating primary wave interaction
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Warning: shallow water so long wave variance is reduced using par%nmax
Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00009.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct041.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 2.15 m
Trep = 7.68 s
Mean dir = 324.57 degN
Overall Trep from all spectra calculated: 7.68 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00010.bcf ...
file done
Calculating primary wave interaction
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Warning: shallow water so long wave variance is reduced using par%nmax
Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00010.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct042.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 1.95 m
Trep = 7.98 s
Mean dir = 326.49 degN
Overall Trep from all spectra calculated: 7.98 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00011.bcf ...
file done
Calculating primary wave interaction
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Warning: shallow water so long wave variance is reduced using par%nmax
Calculating flux at boundary
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Writing long wave mass flux to q_series00011.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
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Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct043.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 1.65 m
Trep = 7.36 s
Mean dir = 327.94 degN
Overall Trep from all spectra calculated: 7.36 s
Calculating Fourier components
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Writing wave energy to E_series00012.bcf ...
file done
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Warning: shallow water so long wave variance is reduced using par%nmax
Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00012.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 78.6 percent complete. Average dt 0.317 seconds
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct044.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 1.36 m
Trep = 6.88 s
Mean dir = 329.42 degN
Overall Trep from all spectra calculated: 6.88 s
Calculating Fourier components
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Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00013.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00013.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 85.7 percent complete. Average dt 0.437 seconds
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--------------------------------
Calculating spectral wave boundary conditions
--------------------------------
Reading spectrum at location 1
Reading from SWAN file nh6000.loct045.sp2 ...
Interpreting spectrum at location 1
Values calculated from interpolated spectrum:
Hm0 = 1.17 m
Trep = 6.60 s
Mean dir = 329.33 degN
Overall Trep from all spectra calculated: 6.60 s
Calculating Fourier components
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Wave energy outside computational domain at offshore boundary: .0%
Calculating short wave time series for theta bin 1 of 1
Y-point 1 of 1 done.
Wave bin 1 contains 100.00% of total energy
Writing wave energy to E_series00014.bcf ...
file done
Calculating primary wave interaction
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Calculating flux at boundary
Flux 1 of 1
Writing long wave mass flux to q_series00014.bcf ...
file done
--------------------------------
Spectral wave boundary conditions complete
--------------------------------
Simulation 92.9 percent complete. Average dt 0.599 seconds
Time remaining 58 minutes
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Duration : 5835.4838719999998 seconds
Timesteps : 698167
Average dt : 0.21656709641103059 seconds
Unit speed : 9.9031899489113802E-006 seconds/1
MPI timing : procs : 1
seconds : total : 8348.1584389209747 seconds
loop : 7812.7142498493195 seconds
End of program xbeach