Model:ParFlow: Difference between revisions
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{{ | {{Model identity | ||
| | |Model type=Modular | ||
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{{Model identity2 | |||
|ModelDomain=Terrestrial, Hydrology | |||
|One-line model description=Parallel, high-performance, integrated watershed model | |||
|Extended model description=ParFlow is an open-source, object-oriented, parallel watershed flow model. It includes fully-integrated overland flow, the ability to simulate complex topography, geology and heterogeneity and coupled land-surface processes including the land-energy budget, biogeochemistry and snow (via CLM). It is multi-platform and runs with a common I/O structure from laptop to supercomputer. ParFlow is the result of a long, multi-institutional development history and is now a collaborative effort between CSM, LLNL, UniBonn and UCB. ParFlow has been coupled to the mesoscale, meteorological code ARPS and the NCAR code WRF. | |||
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{{Model keywords | |||
|Model keywords=basins | |||
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{{Modeler information | |||
|First name=Reed | |||
{ | |Last name=Maxwell | ||
|Type of contact=Project manager | |||
| | |Institute / Organization=International Groundwater Modeling Center, Colorado School of Mines | ||
|- | |Postal address 1=1500 Illinois St | ||
|Postal address 2=Colorado School of Mines | |||
|Town / City=Golden | |||
|Postal code=80401 | |||
|Country=United States | |||
|State=Colorado | |||
|Email address=rmaxwell@mines.edu | |||
|Phone=303-384-2456 | |||
}} | |||
{{Additional modeler information | |||
|Additional first name=Steven | |||
| | |Additional last name=Smith | ||
|Additional type of contact=Model developer | |||
}} | |||
{{Additional modeler information | |||
|Additional first name=Stefan | |||
|Additional last name=Kollet | |||
|Additional type of contact=Technical contact | |||
}} | |||
{{Model technical information | |||
|Supported platforms=Unix, Linux, Mac OS | |||
|Programming language=Fortran90, C | |||
|Start year development=1994 | |||
|Does model development still take place?=Yes | |||
|DevelopmentCode=Active | |||
|DevelopmentCodeYearChecked=2020 | |||
|Model availability=As code | |||
|Source code availability=Through web repository | |||
|Source web address=http://inside.mines.edu/~rmaxwell/maxwell_software.shtml | |||
|Program license type=LGPL | |||
|Memory requirements=depends on problem size | |||
|Typical run time=depends on problem size | |||
| | }} | ||
{{Input - Output description | |||
|Describe input parameters=TCL script, many physical and numerical parameters needed. | |||
==== | |Input format=ASCII, Binary | ||
|Describe output parameters=Many: pressure, saturation, temperature, energy fluxes, flow, etc. | |||
|Output format=ASCII, Binary | |||
| | |Pre-processing software needed?=No | ||
| | |Post-processing software needed?=Yes | ||
|- | |Describe post-processing software=ParFlow comes with a robust, integrated toolkit (pftools) that provides a wide range of postprocessing options. | ||
| | |Visualization software needed?=Yes | ||
| | |If above answer is yes=Matlab | ||
| | |Other visualization software=Visit | ||
| | }} | ||
| | {{Process description model | ||
| | |Describe processes represented by the model=Processes like: | ||
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*Saturated subsurface flow. | *Saturated subsurface flow. | ||
*Variably-saturated subsurface flow. | *Variably-saturated subsurface flow. | ||
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*Bio-geochemistry (plant/water interactions). | *Bio-geochemistry (plant/water interactions). | ||
*Correlated, Gaussian random field generators. | *Correlated, Gaussian random field generators. | ||
| | |Describe key physical parameters and equations=Fully described in manual. | ||
|Describe length scale and resolution constraints=Depends upon application. | |||
|Describe time scale and resolution constraints=Depends upon application. | |||
| | |Describe any numerical limitations and issues=Depends only on computer resources. | ||
}} | |||
{{Model testing | |||
| | |Describe available calibration data sets=ParFlow contains a directory of test cases that may be automated as a check of the code. | ||
|Describe available test data sets=ParFlow contains a directory of test cases that may be automated as a check of the code. | |||
}} | |||
| | {{Users groups model | ||
|Do you have current or future plans for collaborating with other researchers?=Yes, many already in progress. | |||
}} | |||
{{Documentation model | |||
|Manual model available=Yes | |||
|Model website if any=http://inside.mines.edu/~rmaxwell/maxwell_software.shtml | |||
}} | |||
{ | {{Additional comments model}} | ||
| | {{CSDMS staff part | ||
|OpenMI compliant=No but possible | |||
| | |IRF interface=No but possible | ||
|CMT component=No but possible | |||
|CCA component=No but possible | |||
}} | |||
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== | ==Introduction== | ||
== | == History == | ||
== | == References == | ||
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== | == Issues == | ||
== Help == | |||
{{#ifexist:Model_help:{{PAGENAME}}|[[Model_help:{{PAGENAME}}]]|}} | |||
== Input Files == | |||
== Output Files == | |||
Latest revision as of 20:18, 16 September 2020
ParFlow
Metadata
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Introduction
History
References
Nr. of publications: | 32 |
Total citations: | 3098 |
h-index: | 16 |
m-quotient: | 0.53 |
Featured publication(s) | Year | Model described | Type of Reference | Citations |
---|---|---|---|---|
Maxwell, Reed M.; Miller, Norman L.; 2005. Development of a Coupled Land Surface and Groundwater Model. Journal of Hydrometeorology, 6, 233–247. 10.1175/JHM422.1 (View/edit entry) | 2005 | ParFlow |
Model overview | 394 |
Ashby, S.F.; Falgout, R.D.; 1996. A parallel multigrid preconditioned conjugate gradient algorithm for groundwater flow simulations. Nuclear Science and Engineering, 124, 145-159. (View/edit entry) | 1996 | ParFlow |
Model overview | 375 |
See more publications of ParFlow |