Summary
Also known as
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Model type
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Modular
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Model part of larger framework
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Note on status model
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Date note status model
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Technical specs
Supported platforms
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Unix, Linux
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Other platform
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Programming language
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Fortran77, Fortran90
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Other program language
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Code optimized
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Multiple processors implemented
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Nr of distributed processors
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Nr of shared processors
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Start year development
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1999
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Does model development still take place?
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No
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If above answer is no, provide end year model development
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2004
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Code development status
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When did you indicate the 'code development status'?
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Model availability
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As code
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Source code availability (Or provide future intension)
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Through owner"Through owner" is not in the list (Through web repository, Through CSDMS repository) of allowed values for the "Source code availability" property.
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Source web address
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Source csdms web address
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Program license type
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GPL v2
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Program license type other
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Memory requirements
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--
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Typical run time
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--
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In/Output
Describe input parameters
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See documentation.
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Input format
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ASCII
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Other input format
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Describe output parameters
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See documentation.
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Output format
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ASCII
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Other output format
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Pre-processing software needed?
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No
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Describe pre-processing software
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Post-processing software needed?
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No
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Describe post-processing software
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Visualization software needed?
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Yes
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If above answer is yes
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Matlab
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Other visualization software
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Process
Describe processes represented by the model
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NearCoM predicts surface waves and wave-induced nearshore processes such as nearshore circulation, sediment transport and morphological changes.
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Describe key physical parameters and equations
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Wave equations, wave-averaged circulation equations and equations for bedload and suspended-load sediment transport.
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Describe length scale and resolution constraints
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Nearshore regions from shoreline to 10 meter water depth. Model resolution depends on specific modules.
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Describe time scale and resolution constraints
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Hours to months.
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Describe any numerical limitations and issues
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Wave modules have an automatic grid refinement feature. Circulation modules have two kinds: CFL limited and CFL-free schemes.
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Testing
Describe available calibration data sets
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Duck 94 data set and laboratory experiments.
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Upload calibration data sets if available:
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Describe available test data sets
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http://www.frf.usace.army.mil/
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Upload test data sets if available:
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Describe ideal data for testing
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Haas, K. and Svendsen, I. (2002) Laboratory measurements of the vertical structure of rip currents. Journal of Geophysical Research, 107(C5), 3047, doi:10.1029/2001JC000911
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Other
Do you have current or future plans for collaborating with other researchers?
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--
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NearCoM
Introduction
History
Papers
NearCoM Questionnaire
Contact Information
Model:
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NearCoM
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Contact person:
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James Kirby (Model developer)
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Institute:
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University of Delaware
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City:
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Newark, DE
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Country:
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USA
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Email:
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kirby@udel.edu
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2nd person involved:
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Fengyan Shi (Technical contact)
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3rd person involved:
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Model description
Model type:
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Modular model for the coastal domain.
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Description:
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NearCoM predicts waves, currents, sediment transport and bathymetric change in the nearshore ocean, between the shoreline and about 10 m water depth. The model consists of a "backbone", i.e., the master program, handling data input and output as well as internal storage, together with a suite of "modules": wave module, circulation module and sediment transport module.
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Technical information
Supported platforms:
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UNIX, Linux
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Programming language:
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Fortran77, Fortran90
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Model development started at:
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1999 and ended in 2004.
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To what degree will the model become available:
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Source code will be available
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Current license type:
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GPL v2
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Memory requirements:
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--
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Typical run time:
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--
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Input / Output description
Input parameters:
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See documentation.
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Input format:
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ASCII
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Output parameters:
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See documentation.
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Output format:
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ASCII
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Post-processing software (if needed):
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No
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Visualization software (if needed):
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Yes, Matlab
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Process description
Processes represented by model:
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NearCoM predicts surface waves and wave-induced nearshore processes such as nearshore circulation, sediment transport and morphological changes.
|
Key physical parameters & equations:
|
Wave equations, wave-averaged circulation equations and equations for bedload and suspended-load sediment transport.
|
Length scale & resolution constraints:
|
Nearshore regions from shoreline to 10 meter water depth. Model resolution depends on specific modules.
|
Time scale & resolution constraints:
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Hours to months.
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Numerical limitations and issues :
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Wave modules have an automatic grid refinement feature. Circulation modules have two kinds: CFL limited and CFL-free schemes.
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Testing
Available calibration data sets:
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Duck 94 data set and laboratory experiments.
|
Available test data sets:
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http://www.frf.usace.army.mil/
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Ideal data for testing:
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Haas, K. and Svendsen, I. (2002) Laboratory measurements of the vertical structure of rip currents. Journal of Geophysical Research, 107(C5), 3047, doi:10.1029/2001JC000911
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User groups
Currently or plans for collaborating with:
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--
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Documentation
Issues
Help
Input Files
Output Files
Download
Source |