Input parameters

Table 27 Overview of available keywords related to *

parameter

description

default

range

units

ARC+

Switch for active reflection compensation at seaward boundary

1

0 - 1

BRfac+

Calibration factor surface slope

1.0

0.0 - 1.0

CFL

Maximum courant-friedrichs-lewy number

0.7

0.1 - 0.9

Cd+

Wind drag coefficient

0.002

0.0001 - 0.01

Hrms

Hrms wave height for instat = stat, bichrom, ts_1 or ts_2

1.0

0.0 - 10.0

m

Tbfac+

Calibration factor for bore interval tbore: tbore = tbfac*tbore

1.0

0.0 - 1.0

Tlong

Wave group period for case instat = bichrom

80.0

20.0 - 300.0

s

Tm01switch+

Switch to enable tm01 rather than tm-10

0

0 - 1

Topt+

Absolute period to optimize coefficient

10.0

1.0 - 20.0

s

Trep

Representative wave period for instat = stat, bichrom, ts_1 or ts_2

10.0

1.0 - 20.0

s

Tsmin+

Minimum adaptation time scale in advection diffusion equation sediment

0.5

0.01 - 10.0

s

advection

Include advection in flow solver

1

0 - 1

alfa

Angle of x-axis from east

0.0

0.0 - 360.0

deg

alpha+

Wave dissipation coefficient in roelvink formulation

1.38

0.5 - 2.0

aquiferbot+

Level of uniform aquifer bottom

-10.0

-100.0 - 100.0

m

aquiferbotfile+

Name of the aquifer bottom file

<file>

avalanching

Turn on avalanching

1

0 - 1

back

Switch for boundary at bay side

abs_2d

wall, abs_1d, abs_2d, wlevel

bcfile

Name of spectrum file

<file>

bclwonly

Switch to run boundary conditions with long waves only

0

0 - 1

bdslpeffdir

Modify the direction of the sediment transport based on the bed slope

none

none, talmon

bdslpeffdirfac

Calibration factor in the modification of the direction

1.0

0.0 - 2.0

bdslpeffini

Modify the critical shields parameter based on the bed slope

none

none, total, bed

bdslpeffmag

Modify the magnitude of the sediment transport based on the bed slope, uses facsl

roelvink_total

none, roelvink_total, roelvink_bed, soulsby_total, soulsby_bed

bed+

Calibration factor for bed transports

1

0 - 1

bedfriccoef

Bed friction coefficient

0.01

3.5e-05 - 0.9

bedfricfile

Bed friction file (valid for all bed friction coefficients)

<file>

bedfriction

Bed friction formulation

manning

chezy, cf, white-colebrook, manning, white-colebrook-grainsize

bermslope

Swash zone slope for (semi-) reflective beaches

0.0

0.0 - 1.0

beta+

Breaker slope coefficient in roller model

0.08

0.05 - 0.3

betad+

Dissipation parameter long wave breaking turbulence

1.0

0.0 - 10.0

break

Type of breaker formulation

roelvink_daly

roelvink1, baldock, roelvink2, roelvink_daly, janssen

breakerdelay+

Switch to enable breaker delay model

1.0

0.0 - 3.0

breakviscfac+

Factor to increase viscosity during breaking

1.5

1.0 - 3.0

breakvisclen+

Ratio between local depth and length scale in extra breaking viscosity

1.0

0.75 - 3.0

bulk+

Switch to compute bulk transport rather than bed and suspended load separately

0

0 - 1

cats+

Current averaging time scale for wci, in terms of mean wave periods

4.0

1.0 - 50.0

Trep

ci+

Mass coefficient in shields inertia term

1.0

0.5 - 1.5

cm

Mass coefficient in shields inertia term

1.5

0.0 - 3.0

cmax+

Maximum allowed sediment concentration

0.1

0.0 - 1.0

compi

Imaginary unit

-123

correctHm0

Switch to enable hm0 correction

1

0 - 1

cyclic

Turn on cyclic boundary conditions

0

0 - 1

defuse

Turn on timestep explosion prevention mechanism

1

0 - 1

delta+

Fraction of wave height to add to water depth

0.0

0.0 - 1.0

deltar

Estimated ripple height

0.025

0.001 - 1.0

depfile*

Name of the input bathymetry file

<file>

depthscale+

Depthscale of (lab)test simulat, affects eps, hmin, hswitch and dzma

1.0

1.0 - 200.0

dilatancy

Switch to reduce critical shields number due dilatancy

0

0 - 1

dir0

Mean wave direction for instat = stat, bichrom, ts_1 or ts_2 (nautical convention)

270.0

-360.0 - 360.0

deg

disch_loc_file+

Name of discharge locations file

<file>

disch_timeseries_file+

Name of discharge timeseries file

<file>

dispc+

Coefficient in front of the vertical pressure gradient

-1.0

0.1 - 2.0

?

drifterfile

Name of drifter data file

<file>

dryslp

Critical avalanching slope above water (dz/dx and dz/dy)

1.0

0.1 - 2.0

dt

Computational time step, in hydrodynamic time

-123

s

dtbc+

Timestep used to describe time series of wave energy and long wave flux at offshore boundary (not affected by morfac)

1.0

0.1 - 2.0

s

dtheta*

Directional resolution

10.0

0.1 - 180.0

deg

dthetaS_XB+

The (counter-clockwise) angle in the degrees needed to rotate from the x-axis in swan to the x-axis pointing east

0.0

-360.0 - 360.0

deg

dtheta_s*

Directional resolution in case of stationary refraction

10.0

0.1 - 20.0

deg

dtset

Fixed timestep, overrides use of cfl

0.0

0.001 - 100.0

dwetlayer+

Thickness of the top soil layer interacting more freely with the surface water

0.1

0.01 - 1.0

m

dx*

Regular grid spacing in x-direction

-1.0

0.0 - 1000000000.0

m

dy*

Regular grid spacing in y-direction

-1.0

0.0 - 1000000000.0

m

dzg1+

Thickness of top sediment class layers

par%dzg1

0.01 - 1.0

m

dzg2+

Nominal thickness of variable sediment class layer

par%dzg1

0.01 - 1.0

m

dzg3+

Thickness of bottom sediment class layers

par%dzg1

0.01 - 1.0

m

dzmax+

Maximum bed level change due to avalanching

0.05

0.0 - 1.0

m/s/m

eps

Threshold water depth above which cells are considered wet

0.005

0.001 - 0.1

m

eps_sd

Threshold velocity difference to determine conservation of energy head versus momentum

0.5

0.0 - 1.0

m/s

epsi+

Ratio of mean current to time varying current through offshore boundary

-1.0

-1.0 - 0.2

facAs+

Calibration factor time averaged flows due to wave asymmetry

0.2

0.0 - 1.0

facDc+

Option to control sediment diffusion coefficient

1.0

0.0 - 1.0

facSk+

Calibration factor time averaged flows due to wave skewness

0.15

0.0 - 1.0

facrun

Calibration coefficient for short wave runup

1.0

0.0 - 2.0

facsd

Fraction of the local wave length to use for shoaling delay depth

1.0

0.0 - 2.0

facsl+

Factor bedslope effect

1.6

0.0 - 1.6

facua+

Calibration factor time averaged flows due to wave skewness and asymmetry

0.175

0.0 - 1.0

fallvelred

Switch to reduce fall velocity for high concentrations

0

0 - 1

fcutoff+

Low-freq cutoff frequency for instat = jons, swan or vardens boundary conditions

0.0

0.0 - 40.0

Hz

flow

Turn on flow calculation

1

0 - 1

form

Equilibrium sediment concentration formulation

vanthiel_vanrijn

soulsby_vanrijn, vanthiel_vanrijn, vanrijn1993

frac_dz+

Relative thickness to split time step for bed updating

0.7

0.5 - 0.98

freewave+

Switch for free wave propagation 0 = use cg (default); 1 = use sqrt(gh) in instat = ts_2

0

0 - 1

friction_acceleration

Turn on or off the effect of acceleration on bed roughness (morrison)

none

none, mccall, nielsen

friction_infiltration

Turn on or off the effect of infiltration on bed roughness (conley and inman)

0

0 - 1

friction_turbulence

Turn on or off the effect of turbulence on bed roughness (reniers van thiel)

0

0 - 1

front

Switch for seaward flow boundary

abs_2d

abs_1d, abs_2d, wall, wlevel, nonh_1d, waveflume

fwcutoff

Depth greater than which the bed friction factor is not applied

1000.0

0.0 - 1000.0

g

Gravitational acceleration

9.81

9.7 - 9.9

ms^-2

gamma

Breaker parameter in baldock or roelvink formulation

0.46

0.4 - 0.9

gamma2

End of breaking parameter in roelvink daly formulation

0.34

0.0 - 0.5

gamma_turb

Calibration factor for turbulence contribution to bed roughness

1.0

0.0 - 2.0

gammax+

Maximum ratio wave height to water depth

2.0

0.4 - 5.0

gridform

Grid definition format

xbeach

xbeach, delft3d

gw0+

Level initial groundwater level

0.0

-5.0 - 5.0

m

gw0file+

Name of initial groundwater level file

<file>

gwReturb+

Reynolds number for start of turbulent flow in case of gwscheme = turbulent

100.0

1.0 - 600.0

gwfastsolve

Reduce full 2d non-hydrostatic solution to quasi-explicit in longshore direction

0

0 - 1

gwflow+

Turn on groundwater flow

0

0 - 1

gwheadmodel+

Model to use for vertical groundwater head

parabolic

parabolic, exponential

gwhorinfil+

Switch to include horizontal infiltration from surface water to groundwater

0

0 - 1

gwnonh+

Switch to turn on or off non-hydrostatic pressure for groundwater

0

0 - 1

gwscheme+

Scheme for momentum equation

laminar

laminar, turbulent

hmin

Threshold water depth above which stokes drift is included

0

0.001 - 1.0

m

hotstartflow+

Switch for hotstart flow conditions with pressure gradient balanced by wind and bed stress

0

0 - 1

hswitch+

Water depth at which is switched from wetslp to dryslp

0.1

0.01 - 1.0

m

hwci+

Minimum depth until which wave-current interaction is used

0.1

0.001 - 1.0

m

hwcimax+

Maximum depth until which wave-current interaction is used

100.0

0.01 - 100.0

m

instat

Old wave boundary condition type

bichrom

stat, bichrom, ts_1, ts_2, jons, swan, vardens, reuse, ts_nonh, off, stat_table, jons_table

irhog8

^-1

-123

N^-1m^3

jetfac

Option to mimic turbulence production near revetments

0.0

0.0 - 1.0

kdmin+

Minimum value of kd (pi/dx > min(kd))

0.0

0.0 - 0.05

kmax

Number of sigma layers in quasi-3d model; kmax = 1 is without vertical structure of flow and suspensions

100

1 - 1000

kx+

Darcy-flow permeability coefficient in x-direction

0.0001

1e-05 - 0.1

ms^-1

ky+

Darcy-flow permeability coefficient in y-direction

0.0001

1e-05 - 0.1

ms^-1

kz+

Darcy-flow permeability coefficient in z-direction

0.0001

1e-05 - 0.1

ms^-1

lat+

Latitude at model location for computing coriolis

0.0

-90.0 - 90.0

deg

lateralwave

Switch for lateral boundary at left

neumann

neumann, wavecrest, cyclic

left

Switch for lateral boundary at ny+1

neumann

neumann, wall, no_advec, neumann_v, abs_1d

lsgrad

Factor to include longshore transport gradient in 1d simulationsdsy/dy=lsgrad*sy; dimension 1/length scale of longshore gradients

0.0

-0.1 - 0.1

1/m

lwave

Turn on short wave forcing on nlsw equations and boundary conditions

1

0 - 1

lws+

Switch to enable long wave stirring

1

0 - 1

lwt+

Switch to enable long wave turbulence

0

0 - 1

m

Power in cos^m directional distribution for instat = stat, bichrom, ts_1 or ts_2

10

2 - 128

maxbrsteep+

Maximum wave steepness criterium

0.4

0.3 - 0.8

maxdtfac

Maximum increase/decrease in time stp in explosion prevention mechanism

500.0

100.0 - 1000.0

maxerror+

Maximum wave height error in wave stationary iteration

0.0005

1e-05 - 0.001

m

maxiter+

Maximum number of iterations in wave stationary

500

2 - 1000

merge+

Merge threshold for variable sediment layer (ratio to nominal thickness)

0.01

0.005 - 0.1

mmpi+

Number of domains in cross-shore direction when manually specifying mpi domains

2

1 - 100

morfac

Morphological acceleration factor

1.0

0.0 - 1000.0

morfacopt+

Switch to adjusting output times for morfac

1

0 - 1

morphology

Turn on morphology

1

0 - 1

morstart

Start time morphology, in morphological time

0.0

0.0 - par%tstop

s

morstop

Stop time morphology, in morphological time

2000.0

0.0 - 10000000.0

s

mpiboundary+

Fix mpi boundaries along y-lines, x-lines, use manual defined domains or find shortest boundary automatically

auto

auto, x, y, man

n+

Power in roelvink dissipation model

10.0

5.0 - 20.0

nc

Smoothing distance for estimating umean (defined as nr of cells)

par%ny+1

1 - par%ny+1

ncfilename+

Xbeach netcdf output file name

<file>

nd+

Number of computational layers in the bed

3

3 - 1000

nd_var+

Index of layer with variable thickness

2

1 - par%nd

ndischarge+

Number of discharge locations

par%ndischarge

0 - 100

ndrifter

Number of drifers

par%ndrifter

0 - 50

ne_layer

Name of file containing thickness of the erodible layer

<file>

ngd

Number of sediment classes

1

1 - 20

nglobalvar

Number of global output variables (as specified by user)

-1

-1 - 20

nhbreaker+

Non-hydrostatic breaker model

2

0 - 2

nhlay+

Layer distribution in the nonhydrostatic model, default = 0.33

0.33

0.0 - 1.0

nmax+

Maximum ratio of cg/c for computing long wave boundary conditions

0.8

0.5 - 1.0

nmeanvar

Number of mean, min, max, var output variables

0

0 - 15

nmpi+

Number of domains in alongshore direction when manually specifying mpi domains

4

1 - 100

nonh+

Turn on non-hydrostatic pressure: 0 = nswe, 1 = nsw + non-hydrostatic pressure compensation stelling & zijlema, 2003

0

0 - 1

nonhq3d

Turn on or off the the reduced two-layer nonhydrostatic model, default = 0

0

0 - 1

nonhspectrum+

Spectrum format for wave action balance of nonhydrostatic waves

0

0 - 1

npoints

Number of output point locations

0

0 - 50

npointvar

Number of point output variables

0

0 - 50

nrugauge

Number of output runup gauge locations

0

0 - 50

nrugdepth+

Number of depths to compute runup in runup gauge

1

1 - 10

nsetbathy+

Number of prescribed bed updates

1

1 - 1000

nship+

Number of ships

-123

nspectrumloc+

Number of input spectrum locations

1

1 - par%ny+1

nspr

Switch to enable long wave direction forced into centres of short wave bins

0

0 - 1

ntdischarge+

Length of discharge time series

par%ntdischarge

0 - 100

nuh

Horizontal background viscosity

0.1

0.0 - 1.0

m^2s^-1

nuhfac+

Viscosity switch for roller induced turbulent horizontal viscosity

1.0

0.0 - 1.0

nuhv

Longshore viscosity enhancement factor, following svendsen (?)

1.0

1.0 - 20.0

nveg

Number of vegetation species

-123

nx*

Number of computational cell corners in x-direction

50

2 - 10000

ny*

Number of computational cell corners in y-direction

2

0 - 10000

nz

Number of computational cells in z-direction

1

1 - 100

oldhu

Switch to enable old hu calculation

0

0 - 1

order+

Switch for order of wave steering,first order wave steering (short wave energy only), second oder wave steering (bound long wave corresponding to short wave forcing is added)

2.0

1.0 - 2.0

outputformat+

Output file format

fortran

fortran, netcdf, debug

outputprecision

Switch between single and double precision output in netcdf

double

single, double

paulrevere

Specifies tide on sea and land or two sea points if tideloc = 2

land

land, sea

phit+

Phase lag angle in nielsen transport equation

25.0

0.0 - 90.0

por

Porosity

0.4

0.3 - 0.5

pormax

Max porosity used in the experession of van rhee

0.5

0.3 - 0.6

posdwn

Bathymetry is specified positive down (1) or positive up (-1)

1.0

-1.0 - 1.0

projection+

Projection string

px

Pi

4.d0*atan(1.d0)

q3d

Turn on quasi-3d sediment transport

0

0 - 1

random+

Switch to enable random seed for instat = jons, swan or vardens boundary conditions

1

0 - 1

reformsteep+

Wave steepness criterium to reform after breaking

0.25d0*par%maxbrsteep

0.0 - 0.95d0*par%maxbrsteep

remdryoutput

Remove dry output points from output data of zs etc.

1

0 - 1

reposeangle

Angle of internal friction

30.0

0.0 - 45.0

deg

rfb+

Switch to feed back maximum wave surface slope in roller energy balance, otherwise rfb = par%beta

0

0 - 1

rheeA

A parameter in the van rhee expression

0.75

0.75 - 2.0

rho

Density of water

1025.0

1000.0 - 1040.0

kgm^-3

rhoa+

Air density

1.25

1.0 - 2.0

kgm^-3

rhog8

1/8*rho*g

-123

Nm^-3

rhos

Solid sediment density (no pores)

2650.0

2400.0 - 2800.0

kgm^-3

right

Switch for lateral boundary at 0

neumann

neumann, wall, no_advec, neumann_v, abs_1d

roller+

Switch to enable roller model

1

0 - 1

rotate

Rotate output as postprocessing with given angle

1

0 - 1

rt

Duration of wave spectrum at offshore boundary, in morphological time

min(3600.d0,par%tstop)

1200.0 - 7200.0

s

rwave

User-defined wave roughness adjustment factor

2.0

0.1 - 10.0

scheme+

Numerical scheme for wave propagation

warmbeam

upwind_1, lax_wendroff, upwind_2, warmbeam

secbrsteep+

Secondary maximum wave steepness criterium

0.5d0*par%maxbrsteep

0.0 - 0.95d0*par%maxbrsteep

secorder+

Use second order corrections to advection/non-linear terms based on maccormack scheme

0

0 - 1

sedtrans

Turn on sediment transport

1

0 - 1

setbathy

Turn on timeseries of prescribed bathy input

0

0 - 1

setbathyfile+*

Name of prescribed bed update file

<file>

shipfile

Name of ship data file

<file>

ships+

Turn on ship waves

0

0 - 1

shoaldelay

Switch to enable shoaling delay

0

0 - 1

sigfac

Dsig scales with log(sigfac)

1.3

0.0 - 10.0

single_dir+

Turn on stationary model for refraction, surfbeat based on mean direction

0

0 - 1

smag+

Switch for smagorinsky subgrid model for viscocity

1

0 - 1

smax+

Maximum shields parameter for equilibrium sediment concentration acc. diane foster

-1.0

-1.0 - 3.0

snells+

Turn on snell’s law for wave refraction

0

0 - 1

solver+

Solver used to solve the linear system

tridiag

sip, tridiag

solver_acc+

Accuracy with respect to the right-hand side usedin the following termination criterion: ||b-ax || < acc*||b||

0.005

1e-05 - 0.1

solver_maxit+

Maximum number of iterations in the linear sip solver

30

1 - 1000

solver_urelax+

Underrelaxation parameter

0.92

0.5 - 0.99

sourcesink+

Switch to enable source-sink terms to calculate bed level change rather than suspended transport gradients

0

0 - 1

split+

Split threshold for variable sediment layer (ratio to nominal thickness)

1.01

1.005 - 1.1

sprdthr+

Threshold ratio to maximum value of s above which spectrum densities are read in

0.08

0.0 - 1.0

struct

Switch for enabling hard structures

0

0 - 1

sus+

Calibration factor for suspensions transports

1

0 - 1

swave

Turn on short waves

1

0 - 1

swkhmin

Minimum kh value to include in wave action balance, lower included in nlswe (default -1.d0)

-0.01

-0.01 - 0.35

swrunup

Turn on short wave runup

0

0 - 1

sws+

Switch to enable short wave and roller stirring and undertow

1

0 - 1

t

Computational time, in hydrodynamic time

-123

s

taper

Spin-up time of wave boundary conditions, in morphological time

100.0

0.0 - 1000.0

s

thetamax*

Higher directional limit (angle w.r.t computational x-axis)

90.0

-360.0 - 360.0

deg

thetamin*

Lower directional limit (angle w.r.t computational x-axis)

-90.0

-360.0 - 360.0

deg

thetanaut

Switch to specify thetamin and thetamax in nautical convention rather than cartesian

0

0 - 1

thetanum+

Coefficient determining whether upwind (1) or central scheme (0.5) is used.

1.0

0.5 - 1.0

tideloc

Number of corner points on which a tide time series is specified

0

0 - 4

tidetype+

Switch for offfshore boundary, velocity boundary or instant water level boundary

velocity

instant, velocity, hybrid

timings+

Switch enable progress output to screen

1

0 - 1

tintc+

Interval time of cross section output

-123

s

tintg

Interval time of global output

1.0

0.01 - par%tstop-par%tstart

s

tintm

Interval time of mean, var, max, min output

par%tstop-par%tstart

1.0 - par%tstop-par%tstart

s

tintp

Interval time of point and runup gauge output

1.0

0.01 - par%tstop-par%tstart

s

tnext

Next time point for output or wave stationary calculation, in hydrodynamic time

-123

s

trepfac+

Compute mean wave period over energy band: par%trepfac*maxval(sf) for instat jons, swan or vardens; converges to tm01 for trepfac = 0.0 and

0.01

0.0 - 1.0

tsfac+

Coefficient determining ts = tsfac * h/ws in sediment source term

0.1

0.01 - 1.0

tsglobal+

Name of file containing timings of global output

tsmean+

Name of file containing timings of mean, max, min and var output

tspoints+

Name of file containing timings of point output

tstart

Start time of output, in morphological time

0.0

0.0 - par%tstop

s

tstop*

Stop time of simulation, in morphological time

2000.0

1.0 - 1000000.0

s

tunits+

Time units in udunits format (seconds since 1970-01-01 00:00:00.00 +1:00)

s

turb+

Switch to include short wave turbulence

wave_averaged

none, wave_averaged, bore_averaged

turbadv+

Switch to activate turbulence advection model for short and or long wave turbulence

none

none, lagrangian, eulerian

umin

Threshold velocity for upwind velocity detection and for vmag2 in equilibrium sediment concentration

0.0

0.0 - 0.2

m/s

vardx

Switch for variable grid spacing

1

0 - 1

vegcanflo

Include incanopy flow [1] or not [0]

0

0 - 1

vegetation+

Turn on interaction of waves and flow with vegetation

0

0 - 1

veggiefile

Name of veggie species list file

veggiemapfile

Name of veggie species map file

vegnonlin

Include non-linear wave effect [1] or not [0]

0

0 - 1

veguntow

Include undertow in phase-averaged vegetati

1

0 - 1

vicmol

Molecular viscosity

1e-06

0.0 - 0.001

viscosity

Include viscosity in flow solver

1

0 - 1

vonkar

Von karman constant

0.4

0.01 - 1.0

waveform

Wave shape model

vanthiel

ruessink_vanrijn, vanthiel

wavemodel

Stationary (0), surfbeat (1) or non-hydrostatic (2)

surfbeat

stationary, surfbeat, nonh

wavfriccoef

Wave friction coefficient

-123

wavfricfile

Wave friction file

<file>

wavint

Interval between wave module calls (only in stationary wave mode)

600.0

1.0 - 3600.0

s

wbctype

New wave boundary condition type

jonstable

params, parametric, swan, vardens, off, jonstable, reuse, ts_1, ts_2, ts_nonh

wbcversion

Version of wave boundary conditions

3

1 - 3

wci

Turns on wave-current interaction

0

0 - 1

wearth+

Angular velocity of earth calculated as: 1/rotation_time (in hours)

1.d0/24.d0

0.0 - 1.0

hour^-1

wetslp

Critical avalanching slope under water (dz/dx and dz/dy)

0.15

0.1 - 1.0

wind

Include wind in flow solver

1

0 - 1

windfile

Name of file with non-stationary wind data

<file>

windth

Nautical wind direction, in case of stationary wind

270.0

-360.0 - 360.0

deg

windv

Wind velocity, in case of stationary wind

0.0

0.0 - 200.0

ms^-1

ws

Average fall velocity (is computed in morphevolution)

0.02d0

m/s

xfile

Name of the file containing x-coordinates of the calculation grid

<file>

xori

X-coordinate of origin of axis

0.0

-1000000000.0 - 1000000000.0

m

xyfile*

Name of the file containing delft3d xy-coordinates of the calculation grid

<file>

yfile

Name of the file containing y-coordinates of the calculation grid

<file>

yori

Y-coordinate of origin of axis

0.0

-1000000000.0 - 1000000000.0

m

z0+

Zero flow velocity level in soulsby and van rijn (1997) sediment concentration

0.006

0.0001 - 0.05

m

zs0

Inital water level

0.0

-5.0 - 5.0

m

zs0file

Name of tide boundary condition series

<file>

zsinitfile

Name of inital water level file

<file>

dtlimts+

Factor of the timestep to determine the numerical limiter of the adaptation time.

1.0

0 - 20.0

oldTsmin+

Switch to apply the tsmin parameter instead of the dtlimts..

0

0 - 1

deltahmin

Dimensionless coefficent to determine the threshold water depth above which stokes drift is included

0.1

0.0 - 1.0

oldhmin

Switch to apply the old hmin parameter instead of the deltahmin

0

0 - 1

rainfall

Apply rainfall in simulation

0

0 - 1

rainfallrate

Constant and uniform rainfall rate

0

0 - 2000

mm/hr

rainfallratefile

File with rainfall rate for each grid point

<file>

nrainfallrate

Number of moments in time with rainfall specified

<file>

writehotstart

Write hotstart during simulation

0

0 - 1

hotstart

Initialize simulation with hotstart

0

0 - 1

hotstartfileno

Number of hotstart file which should be applied as initialization

0

0-999

tinth

Output interval of writing a hotstart file

0

0-tstop

alfaD50

calibration coefficent for grain size term

0

0-1

wbcRemoveStokes

Switch to remove long wave Stokes drift component at the offshore boundary

1

0-1

wbcScaleEnergy

Switch to correct random time series of wave height to exactly match input Hm0

0

0-1

cyclicdiradjust

Adjust alongshore wave length to fit inside domain with cyclic boundary conditions

0

0-1