Modélisation de la dynamique hydro-sédimentaire et la diffusion
des polluants
101
Tableau (V.2) : Résumé de paramétrage utilisé, avant la simulation (Hoggas, 2018)
Input parameters
Domain
Maillage de la bathymétrie
Time
No of time steps :144 /Time step interval:900s
Module
Sand Transport (ST)
Spectral Weave (SW)
Hydrodynamic (HD)
Hydrodynamic Model
Solution technique
Low ordre, fast algorithm /Min:900s/Max:900s
Depth
No depth correction
Flood and Dry
Include flood and dry
Density
Barotropic
Eddy Viscosity
Smagorinsky formulation: Constant=0.28
Bed Resistance
Manning number: Constant=32. √í µí±
3
/s
Coriolis Forcing
Varying in domain
Wind Forcing
Varying in time, constant in domain(Wind Table of
Bou Ismail bay 2007-2017)
Ice Coverage
Non ice coverage
Weave Radiation
Wave radiation from SW simulation
Initial Conditions
Surface elevation=0m
U-velocity=0m/s
V-velocity=0m/s
Boundary Conditions
West
Specified level=0.34 Soft start:900s
Est
Specified level=0.34 Soft start:900s
North
Specified level=0.34 Soft start:900s
Output
HD
Hydrodynamic
Current speed
Current direction
Sand Transport
Model
Model Definition
Model: Weave and current (Sediment table of Bou
Ismail Bay)
Sediment Properties
Porosity = 0.4
Grain Diameter=0.107 (Mean of d50)
Forcing
Wave radiation from SW simulation
Output
ST
Sand Transport
Toral loand, magnitude
Toral loand, direction
Spectral Wave Model
Spectral Discretization Discretization type : Directional sector
Number of direction=10
Minimum direction=30
Maximum direction=50
Water Level Condition Water level condition from HD-Simulation
Current Condition
Current variation from HD-Simulation
Wind Forcing
From Wind table of Bou Ismail Bay 2007-2017
Boundary Condition
West
Hs=4.27m Tp=8s Direction=45°
Est
-
North
Hs=4.27m Tp=8s Direction=45°
Output
SW
Spectral Wave
Wave height
Wave direction
Wave power
Wave periode
des polluants
101
Tableau (V.2) : Résumé de paramétrage utilisé, avant la simulation (Hoggas, 2018)
Input parameters
Domain
Maillage de la bathymétrie
Time
No of time steps :144 /Time step interval:900s
Module
Sand Transport (ST)
Spectral Weave (SW)
Hydrodynamic (HD)
Hydrodynamic Model
Solution technique
Low ordre, fast algorithm /Min:900s/Max:900s
Depth
No depth correction
Flood and Dry
Include flood and dry
Density
Barotropic
Eddy Viscosity
Smagorinsky formulation: Constant=0.28
Bed Resistance
Manning number: Constant=32. √í µí±
3
/s
Coriolis Forcing
Varying in domain
Wind Forcing
Varying in time, constant in domain(Wind Table of
Bou Ismail bay 2007-2017)
Ice Coverage
Non ice coverage
Weave Radiation
Wave radiation from SW simulation
Initial Conditions
Surface elevation=0m
U-velocity=0m/s
V-velocity=0m/s
Boundary Conditions
West
Specified level=0.34 Soft start:900s
Est
Specified level=0.34 Soft start:900s
North
Specified level=0.34 Soft start:900s
Output
HD
Hydrodynamic
Current speed
Current direction
Sand Transport
Model
Model Definition
Model: Weave and current (Sediment table of Bou
Ismail Bay)
Sediment Properties
Porosity = 0.4
Grain Diameter=0.107 (Mean of d50)
Forcing
Wave radiation from SW simulation
Output
ST
Sand Transport
Toral loand, magnitude
Toral loand, direction
Spectral Wave Model
Spectral Discretization Discretization type : Directional sector
Number of direction=10
Minimum direction=30
Maximum direction=50
Water Level Condition Water level condition from HD-Simulation
Current Condition
Current variation from HD-Simulation
Wind Forcing
From Wind table of Bou Ismail Bay 2007-2017
Boundary Condition
West
Hs=4.27m Tp=8s Direction=45°
Est
-
North
Hs=4.27m Tp=8s Direction=45°
Output
SW
Spectral Wave
Wave height
Wave direction
Wave power
Wave periode
