SMS:CMS-Wave Model Control: Difference between revisions
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== Wave Source == | == Wave Source == | ||
The wave source options include: | The wave source options include: | ||
* '''Spectra''' | * '''Spectra''' – wave state is specified as a wave spectrum on the boundary and the model propagates the spectra over the domain | ||
* '''Wind''' | * '''Wind''' – waves are generated from wind energy only | ||
* '''Spectra and wind''' | * '''Spectra and wind''' – a combination of the spectra and wind types are used | ||
* '''Simplified formulation''' | * '''Simplified formulation''' – boundaries are specified in the same manner as "Spectra and wind", but the model uses a simplified formulation internally. This can be used for faster run times, however the results will be less accurate. | ||
* '''Currents''' – specify a dataset and timestep | |||
* '''Surge''' – specify a dataset or set to be spatially constant | |||
* '''Use dates''' – associate dates/times with the model | |||
* '''Spectra''' – | |||
** '''None''' – spectral data is not used in the simulation | |||
** '''Single''' – the grid's spectral data is used | |||
** '''Spatially varied''' – spectral input is used from a spectral coverage | |||
** '''From parent grid''' – spectral input is used from a parent grid | |||
* '''Wind''' – | |||
** '''None''' – wind data is not used in the simulation | |||
** '''Constant''' – wind data is constant throughout the simulation | |||
** '''Varied''' – a vector dataset is used to define the wind data | |||
* '''Simplified formulation''' – boundaries are specified in the same manner, but the model uses a simplified formulation internally. This can be used for faster run times, however the results will be less accurate. | |||
== Output == | == Output == |
Revision as of 23:05, 5 November 2012
The Model Control… command in the CMS-Wave Menu opens the CMS-Wave Model Control Dialog. This dialog is divided into sections for different types of parameters which are used by the model as it runs. These include:
Settings
The settings section is used to specify model input options including:
- Allow wetting and drying
- Forward reflection
- Backward reflection
- Bed friction
- Diffraction intensity
- Wave breaking formula
- Currents
- Muddy bed
Wave Source
The wave source options include:
- Spectra – wave state is specified as a wave spectrum on the boundary and the model propagates the spectra over the domain
- Wind – waves are generated from wind energy only
- Spectra and wind – a combination of the spectra and wind types are used
- Simplified formulation – boundaries are specified in the same manner as "Spectra and wind", but the model uses a simplified formulation internally. This can be used for faster run times, however the results will be less accurate.
- Currents – specify a dataset and timestep
- Surge – specify a dataset or set to be spatially constant
- Use dates – associate dates/times with the model
- Spectra –
- None – spectral data is not used in the simulation
- Single – the grid's spectral data is used
- Spatially varied – spectral input is used from a spectral coverage
- From parent grid – spectral input is used from a parent grid
- Wind –
- None – wind data is not used in the simulation
- Constant – wind data is constant throughout the simulation
- Varied – a vector dataset is used to define the wind data
- Simplified formulation – boundaries are specified in the same manner, but the model uses a simplified formulation internally. This can be used for faster run times, however the results will be less accurate.
Output
The output section is used to specify optional output from the model including:
- Radiation stresses
- Breaking
Related Topics
Modules: Mesh Module · Cartesian Grid Module · Scatter Module · Map Module · GIS Module · Particle Module
Models: ADCIRC · BOUSS-2D · CGWAVE · CMS-Flow · CMS-Wave · FESWMS · FVCOM · Generic Mesh Model · GENESIS · HYDRO AS-2D · PTM · SRH-2D · Steering · STWAVE · TABS · TUFLOW