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| == WAVEWATCH III ^TM== | | ==Introduction== |
| __TOC__
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| ===Introduction=== | | == History == |
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| === History === | | == Papers == |
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| === Papers === | | == Issues == |
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| === WAVEWATCH III ^TM Questionnaire === | | == Help == |
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| ==== Contact Information ==== | | == Input Files == |
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| {| class="wikitable"
| | == Output Files == |
| | class="model_col1"| Model:
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| | class="model_col2"| WAVEWATCH III ^TM
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| |-
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| | class="model_col1"| Contact person:
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| | class="model_col2"| Hendrik Tolman (model developer)
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| |-
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| | class="model_col1"| Institute:
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| | class="model_col2"| NOAA/NCEP
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| | class="model_col1"| City:
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| | class="model_col2"| Camp Springs, Maryland
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| | class="model_col1"| Country:
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| | class="model_col2"| USA
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| |-
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| | class="model_col1"| Email:
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| | class="model_col2"| Hendrik.tolman@NOAA.gov
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| | class="model_col1"| 2nd person involved:
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| | class="model_col2"| --
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| |-
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| | class="model_col1"| 3rd person involved:
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| | class="model_col2"| --
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| |}
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| ==== Model description ====
| | == Download == |
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| {| class="wikitable"
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| | class="model_col1"| Model type:
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| | class="model_col2"| Spectral wind wave model for the coastal/marine domain
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| |-
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| | class="model_col1"| Description:
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| | class="model_col2"| Third generation random phase spectral wave model, including shallow water physcis.
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| |}
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| ==== Technical information ====
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| {| class="wikitable"
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| | class="model_col1"| Supported platforms:
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| | class="model_col2"| UNIX, Linux
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| |-
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| | class="model_col1"| Programming language:
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| | class="model_col2"| Fortran77, Fortran90, Matlab
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| |-
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| | class="model_col1"| Model was developed started from:
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| | class="model_col2"| 1992 and development still takes place
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| |-
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| | class="model_col1"| To what degree will the model become available:
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| | class="model_col2"| As code
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| |-
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| | class="model_col1"| Current license type:
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| | class="model_col2"| --
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| |-
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| | class="model_col1"| Memory requirements:
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| | class="model_col2"| --
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| |-
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| | class="model_col1"| Typical run time:
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| | class="model_col2"| --
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| |}
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| ==== Input / Output description ====
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| {| class="wikitable"
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| | class="model_col1"| Input parameters:
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| | class="model_col2"| wind at 10m, air-sea temperature difference, ice concentration, curents and water levels (bathymetry)
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| |-
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| | class="model_col1"| Input format:
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| | class="model_col2"| ASCII & Binary
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| |-
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| | class="model_col1"| Output parameters:
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| | class="model_col2"| From wave heights to spectral data, see manual
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| | class="model_col1"| Output format:
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| | class="model_col2"| ASCII & Binary
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| | class="model_col1"| Post-processing software (if needed):
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| | class="model_col2"| Matlab and other possible but not necessary
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| | class="model_col1"| Visualization software (if needed):
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| | class="model_col2"| Matlab and GrADS
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| |}
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| ==== Process description ====
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| {| class="wikitable"
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| | class="model_col1"| Processes represented by model:
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| | class="model_col2"| Evolution of wind wave spectra under influence of wind, breaking, nonlinear interactions, bottom interaction (including shoalng and refraction), currents, water level changes and ice concentrsations. No diffraction.
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| | class="model_col1"| Key physical parameters & equations:
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| | class="model_col2"| Spectral action balance equation.
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| | class="model_col1"| Length scale & resolution constraints:
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| | class="model_col2"| Theoretically length scale larger than longest wave length (10km), practically highest resolution sub km. Largest scales should correspond to spatial scales of forcing.
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| | class="model_col1"| Time scale & resolution constraints:
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| | class="model_col2"| Time steps from seconds to 1h. Time length of runs can be up to years.
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| | class="model_col1"| Numerical limitations and issues :
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| | class="model_col2"| Explicit schemes make high resolution runs expensive.
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| |}
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| ==== Testing ====
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| {| class="wikitable"
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| | class="model_col1"| Available calibration data sets:
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| | class="model_col2"| Separate publications.
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| | class="model_col1"| Available test data sets:
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| | class="model_col2"| ONR test bed and others.
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| | class="model_col1"| Ideal data for testing:
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| | class="model_col2"| Field data should be used for testing. Lab data has incosistent scaling between gravity and capilary waves.
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| |}
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| ==== User groups ====
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| {| class="wikitable"
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| | class="model_col1"| Currently or plans for collaborating with:
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| | class="model_col2"| Many present contributors to code. Are considering user groups. WISE has been acting as informal in person only user group.
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| |}
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| ==== Documentation ====
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| {| class="wikitable"
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| | class="model_col1"| Key papers of the model:
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| | class="model_col2"| See WAVEWATCH ^TM website
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| | class="model_col1"| Is there a manual available:
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| | class="model_col2"| Yes
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| | class="model_col1"| Model website if any:
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| | class="model_col2"| [http://polar.ncep.noaa.gov/waves http://polar.ncep.noaa.gov/waves]
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| |}
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| ==== Additional comments ====
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| {| class="wikitable"
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| | class="model_col1"| Comments:
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| | class="model_col2"| --
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| |}
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| === Issues ===
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| === Help ===
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| === Input Files ===
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| === Output Files ===
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| === Download ===
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| WAVEWATCH III is made available through the WAVEWATCH III ^TM website: http://polar.ncep.noaa.gov/waves/wavewatch/wavewatch.shtml#documentation | | WAVEWATCH III is made available through the WAVEWATCH III ^TM website: http://polar.ncep.noaa.gov/waves/wavewatch/wavewatch.shtml#documentation |
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| === Source ===
| | == Source == |
| WAVEWATCH III ^TM is made available through the WAVEWATCH III ^TM website: http://polar.ncep.noaa.gov/waves/wavewatch/wavewatch.shtml#documentation | | WAVEWATCH III ^TM is made available through the WAVEWATCH III ^TM website: http://polar.ncep.noaa.gov/waves/wavewatch/wavewatch.shtml#documentation |
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| [[Category:Coastal]] | | [[Category:Coastal]] |
| [[Category:Marine]] | | [[Category:Marine]] |