Model:WASH123D: Difference between revisions
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{{Model identity | |||
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{{Model identity2 | |||
|ModelDomain=Hydrology, Terrestrial | |||
|One-line model description=Watershed Model, River Hydraulics, Overland Flow, Subsurface Flow, Sediment Transport, Water Quality Transport | |||
|Extended model description=WASH123D is an integrated multimedia, multi-processes, physics-based computational watershed model of various spatial-temporal scales. The integrated multimedia includes: | |||
# dentric streams/rivers/canal/open channel, | |||
# overland regime (land surface), | |||
# subsurface media (vadose and saturated zones), and | |||
# ponds, lakes/reservoirs (small/shallow). | |||
It also includes control structures such as weirs, gates, culverts, pumps, levees, and storage ponds and managements such as operational rules for pumps and control structures. | |||
The WASH123D code consisted of eight modules to deal with multiple media: | |||
# 1-D River/Stream Networks, | |||
# 2-D Overland Regime, | |||
# 3-D Subsurface Media (both Vadose and Saturated Zones); | |||
# Coupled 1-D River/Stream Network and 2-D Overland Regime, | |||
# Coupled 2-D Overland Regime and 3-D Subsurface, | |||
# Coupled 3-D Subsurface and 1-D River Systems; | |||
# Coupled 3-D Subsurface Media, 2-D Overland, and 1-D River Network; and | |||
# Coupled 0-D Shallow Water Bodies and 1-D Canal Network. | |||
For any of the above eight modules, flow only, transport only, or coupled flow and transport simulations can be carried out using WASH123D. | |||
}} | |||
{{Start model keyword table}} | |||
{{Model keywords | |||
|Model keywords=basin | |||
}} | |||
{{Model keywords | |||
|Model keywords=Hydrological model | |||
}} | |||
{{Model keywords | |||
|Model keywords=sediment transport | |||
}} | |||
{{End a table}} | |||
{{Modeler information | {{Modeler information | ||
|First name=Gour-Tsyh (George) | |First name=Gour-Tsyh (George) | ||
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|Postal code=32816 | |Postal code=32816 | ||
|State=Florida | |State=Florida | ||
|Country= | |Country=United States | ||
|Email address=gyeh@mail.ucf.edu | |Email address=gyeh@mail.ucf.edu | ||
|Phone=(407) 823-2317 | |Phone=(407) 823-2317 | ||
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|Additional type of contact=Model developer | |Additional type of contact=Model developer | ||
}} | }} | ||
{{Model technical information | {{Model technical information | ||
|Supported platforms=Unix, Windows | |Supported platforms=Unix, Windows | ||
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}} | }} | ||
{{Documentation model | {{Documentation model | ||
|Provide key papers on model if any=Papers: | |Provide key papers on model if any=Key Papers: | ||
* Yeh, G. T., G. Husng, H. P. Cheng, F. Zhang, H. C. Lin, E. Edris, and D. Richards, 2005. A First principle, Physics based Watershed Model: WASH123D. Chapter 9 in Watershed Models (V. P. Singh and D. K. Frevert, ed.), CRC Press LLC, 6000 Broken Sound Parkway, NW, (Suite 300) Boca Raton, FL 33487, USA. pp. 211-244. | * '''Yeh, G. T., G. Husng, H. P. Cheng, F. Zhang, H. C. Lin, E. Edris, and D. Richards, 2005. A First principle, Physics based Watershed Model: WASH123D. Chapter 9 in Watershed Models (V. P. Singh and D. K. Frevert, ed.), CRC Press LLC, 6000 Broken Sound Parkway, NW, (Suite 300) Boca Raton, FL 33487, USA. pp. 211-244.''' | ||
* Huang, G. B. and G. T. Yeh, 2008. A Comparative Study of coupling Approaches for Surface water and groundwater interactions. Journal of Hydrologic Engineering, ASCE ( | * '''Huang, G. B. and G. T. Yeh, 2008. A Comparative Study of coupling Approaches for Surface water and groundwater interactions. Journal of Hydrologic Engineering,14(5): 453~462. Doi: ([http://dx.doi.org/10.1061/(ASCE)HE.1943-5584.0000017 10.1061/(ASCE)HE.1943-5584.0000017]).''' | ||
* Huang, G. B., and G. T. Yeh, 2008. Two-dimensional Dynamic Wave Flow Modeling using A Characteristics-based Method. Journal of Hydrologic Engineering | |||
* Zhang, F., G. T. Yeh, J. C. Parker, S. C. Brooks, M. N., Pace, Y. J. Kim, and P. M. Jardine, 2007. A reaction-based paradigm to model three-dimensional reactive chemical transport in groundwater. J. Contaminant Hydrology. Volume 93, 10-32. | * '''Huang, G. B., and G. T. Yeh, 2008. Two-dimensional Dynamic Wave Flow Modeling using A Characteristics-based Method. Journal of Hydrologic Engineering.''' | ||
* Zhang F., G. T. Yeh, J. C. Parker, and P. M. Jardine, 2008. A reaction-based river/stream water quality model: Model development and numerical schemes. Journal of Hydrology. Vol. 348, 496– 509. | |||
* Yeh, G. T., G. B. Huang, F. Zhang, H. P. Cheng, and H. C. Lin, 2005. WASH123D: A Numerical Model of Flow, Thermal Transport, and Salinity, Sediment, and Water Quality Transport in WAterSHed Systems of 1-D Stream-River Network, 2-D Overland Regime, and 3-D Subsurface Media. A Technical Report Submitted To EPA. Dept. of Civil and Environmental Engineering, University of Central Florida, Orlando, FL 32816. | * '''Zhang, F., G. T. Yeh, J. C. Parker, S. C. Brooks, M. N., Pace, Y. J. Kim, and P. M. Jardine, 2007. A reaction-based paradigm to model three-dimensional reactive chemical transport in groundwater. J. Contaminant Hydrology. Volume 93, 10-32. Doi: ([http://dx.doi.org/10.1016/j.jconhyd.2006.11.007 10.1016/j.jconhyd.2006.11.007]).''' | ||
* '''Zhang F., G. T. Yeh, J. C. Parker, and P. M. Jardine, 2008. A reaction-based river/stream water quality model: Model development and numerical schemes. Journal of Hydrology. Vol. 348, 496– 509. Doi: ([http://dx.doi.org/10.1016/j.jhydrol.2007.10.020 10.1016/j.jhydrol.2007.10.020]).''' | |||
* '''Yeh, G. T., G. B. Huang, F. Zhang, H. P. Cheng, and H. C. Lin, 2005. WASH123D: A Numerical Model of Flow, Thermal Transport, and Salinity, Sediment, and Water Quality Transport in WAterSHed Systems of 1-D Stream-River Network, 2-D Overland Regime, and 3-D Subsurface Media. A Technical Report Submitted To EPA. Dept. of Civil and Environmental Engineering, University of Central Florida, Orlando, FL 32816.''' | |||
|Manual model available=Yes | |Manual model available=Yes | ||
|Model website if any=-- | |Model website if any=-- | ||
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|CCA component=No but possible | |CCA component=No but possible | ||
|IRF interface=No but possible | |IRF interface=No but possible | ||
|CMT component= | |CMT component=No but possible | ||
}} | }} | ||
{{Start coupled table}} | {{Start coupled table}} | ||
{{End a table}} | {{End a table}} | ||
{{End headertab}} | {{End headertab}} | ||
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===Example Simulations=== | ===Example Simulations=== | ||
{{#widget:YouTube|id=aa7VrSPz4us}} | |||
== History == | == History == | ||
== | == References == | ||
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{{#ifexist:Template:{{PAGENAME}}-citation-indices|{{{{PAGENAME}}-citation-indices}}|}}<br> | |||
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== Issues == | == Issues == | ||
== Help == | == Help == | ||
{{#ifexist:Model_help:{{PAGENAME}}|[[Model_help:{{PAGENAME}}]]|}} | |||
===WASH123D help=== | ===WASH123D help=== | ||
Please read [[Media:WASH123D_All.pdf|Technical Document]] for more information about the WASH123D model, or read a specific section:<br> | Please read [[Media:WASH123D_All.pdf|Technical Document]] for more information about the WASH123D model, or read a specific section:<br> | ||
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== Output Files == | == Output Files == | ||
[[Category:Source code not available]] | [[Category:Source code not available]] |
Latest revision as of 20:19, 16 September 2020
WASH123D
Metadata
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Template:WASH123D autokeywords
Introduction
WASH123D
WASH123D is an integrated multimedia, multi-processes, physics-based computational watershed model of various spatial-temporal scales. Below
Example Simulations
History
References
Nr. of publications: | -- |
Total citations: | 0 |
h-index: | --"--" is not a number. |
m-quotient: | 0 |
See more publications of WASH123D
Issues
Help
WASH123D help
Please read Technical Document for more information about the WASH123D model, or read a specific section:
- Cover page
- Table of Content
- Executive Summary
- Chapter 1
- Chapter 2
- Chapter 3
- Chapter 4
- Chapter 5
- Chapter 6
- References