Model:GNE: Difference between revisions
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|Start year development=2002 | |Start year development=2002 | ||
|Does model development still take place?=Yes | |Does model development still take place?=Yes | ||
|Model availability=As code | |Model availability=As code | ||
|Source code availability=Through | |Source code availability=Through web repository | ||
|Source web address=http://www.marine.rutgers.edu/globalnews/GNE/ | |||
|Program license type=Other | |Program license type=Other | ||
|Program license type other=-- | |Program license type other=-- | ||
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{{Input - Output description | {{Input - Output description | ||
|Describe input parameters=Source inputs consist of global, spatially distributed (GIS) raster datasets: hydrological properties (river basin systems, runoff, reservoirs, irrigation, rainfall), topographic slope, land use, agricultural N & P inputs (fertilizer, manure), atmospheric N deposition, sewage, N fixation, etc. | |Describe input parameters=Source inputs consist of global, spatially distributed (GIS) raster datasets: hydrological properties (river basin systems, runoff, reservoirs, irrigation, rainfall), topographic slope, land use, agricultural N & P inputs (fertilizer, manure), atmospheric N deposition, sewage, N fixation, etc. | ||
|Input format=ASCII, Binary | |Input format=ASCII, Binary | ||
|Describe output parameters=Primary outputs: N, P, Si, and C yields and loads by river basin and nutrient form. Secondary outputs: Source attribution by nutrient form and main natural and anthropogenic inputs to watersheds. Total Suspended Solids are also predicted. | |Describe output parameters=Primary outputs: N, P, Si, and C yields and loads by river basin and nutrient form. Secondary outputs: Source attribution by nutrient form and main natural and anthropogenic inputs to watersheds. Total Suspended Solids are also predicted. | ||
|Output format=ASCII | |Output format=ASCII | ||
|Pre-processing software needed?=No | |Pre-processing software needed?=No | ||
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|Visualization software needed?=Yes | |Visualization software needed?=Yes | ||
|If above answer is yes=ESRI, IDL, Matlab | |If above answer is yes=ESRI, IDL, Matlab | ||
|Other visualization software=Most GIS software | |Other visualization software=Most GIS software | ||
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{{Process description model | {{Process description model | ||
|Describe processes represented by the model=Natural, agricultural, atmospheric, and direct human (sewage and P detergents) inputs; effect of hydrological functioning; generalized loss of nutrients in soils and groundwater; loss in rivers, reservoirs, and through consumptive water withdrawals (irrigation). | |Describe processes represented by the model=Natural, agricultural, atmospheric, and direct human (sewage and P detergents) inputs; effect of hydrological functioning; generalized loss of nutrients in soils and groundwater; loss in rivers, reservoirs, and through consumptive water withdrawals (irrigation). | ||
|Describe key physical parameters and equations=Net N & P land surface balance (from inputs, incl. atm. deposition) modulated with calibrated runoff relationships to estimate exports to streams; point sources calculated from socioecon. and sewage treatment information; reservoir and consumptive water withdrawal loss using physical relationships. | |Describe key physical parameters and equations=Net N & P land surface balance (from inputs, incl. atm. deposition) modulated with calibrated runoff relationships to estimate exports to streams; point sources calculated from socioecon. and sewage treatment information; reservoir and consumptive water withdrawal loss using physical relationships. | ||
|Describe length scale and resolution constraints=Limited by resolutn of input & river systems data; basins < 20,000 km2 currently poorly represented | |Describe length scale and resolution constraints=Limited by resolutn of input & river systems data; basins < 20,000 km2 currently poorly represented | ||
|Describe time scale and resolution constraints=Operates at annual scale; monthly-seasonal time steps are being explored. | |Describe time scale and resolution constraints=Operates at annual scale; monthly-seasonal time steps are being explored. | ||
|Describe any numerical limitations and issues=Concerns about extrapolations beyond range of data used for model calibration and parameterization. | |Describe any numerical limitations and issues=Concerns about extrapolations beyond range of data used for model calibration and parameterization. | ||
}} | }} | ||
{{Model testing | {{Model testing | ||
|Describe available calibration data sets=Calibration data consist of compilations of river N, P, Si and C annual yields by form. | |Describe available calibration data sets=Calibration data consist of compilations of river N, P, Si and C annual yields by form. | ||
|Describe available test data sets=Global (GEMS-GLORI), regional, national and literature compilations. A subset used for validation. | |Describe available test data sets=Global (GEMS-GLORI), regional, national and literature compilations. A subset used for validation. | ||
|Describe ideal data for testing=Robust river nutrient fluxes near the mouth representative of annual, contemporary conditions. | |Describe ideal data for testing=Robust river nutrient fluxes near the mouth representative of annual, contemporary conditions. | ||
}} | }} | ||
{{Users groups model | {{Users groups model | ||
|Do you have current or future plans for collaborating with other researchers?=Model is the result of an international collaboration that is a UNESCO-IOC workgroup (Global NEWS). | |Do you have current or future plans for collaborating with other researchers?=Model is the result of an international collaboration that is a UNESCO-IOC workgroup (Global NEWS). | ||
}} | }} | ||
{{Documentation model | {{Documentation model | ||
|Provide key papers on model if any=Papers published in Global Biogeochem. Cycles listed on Global NEWS website; code not published yet. | |Provide key papers on model if any=Papers published in Global Biogeochem. Cycles listed on Global NEWS website; code not published yet. | ||
|Manual model available=Yes | |Manual model available=Yes | ||
|Model website if any=http://www.marine.rutgers.edu/globalnews/ | |Model website if any=http://www.marine.rutgers.edu/globalnews/ | ||
}} | }} | ||
{{Additional comments model | {{Additional comments model | ||
|Comments=Particulates model is regression-based, while dissolved model is more conceptual-mechanistic. Conceptual framework and data sets in development since 2002. Integrated modeling code framework (GNE) developed in 2007; currently tested on Windows only, but can be easily adapted to other platforms. | |Comments=Particulates model is regression-based, while dissolved model is more conceptual-mechanistic. Conceptual framework and data sets in development since 2002. Integrated modeling code framework (GNE) developed in 2007; currently tested on Windows only, but can be easily adapted to other platforms. | ||
}} | }} | ||
{{Infobox Model | {{Infobox Model |
Revision as of 11:20, 7 October 2010
Contact
Name | Sybil Seitzinger |
Type of contact | Project manager |
Institute / Organization | Rutgers - Institute of Marine & Coastal Sciences |
Postal address 1 | 71 Dudley Rd. |
Postal address 2 | |
Town / City | New Brunswick |
Postal code | 08901-85 |
State | New Jersey |
Country | USA"USA" is not in the list (Afghanistan, Albania, Algeria, Andorra, Angola, Antigua and Barbuda, Argentina, Armenia, Australia, Austria, ...) of allowed values for the "Country" property. |
Email address | sybil@marine.rutgers.edu |
Phone | 732-932-6555 |
Fax | 732-932-1792 |
Name | Emilio Mayorga |
Type of contact | Model developer |
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Name | John Harrison |
Type of contact | Model developer |
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GNE
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