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From CSDMS
Xiangjiang  +
No but possible  +
0  +
Fort Collins  +
No but possible  +
No but possible  +
United States  +
Creation date"Creation date" is a predefined property that corresponds to the date of the first revision of a subject and is provided by <a target="_blank" rel="nofollow noreferrer noopener" class="external text" href="https://www.semantic-mediawiki.org/wiki/Help:Special_properties">Semantic MediaWiki</a>.
21:16:12, 17 February 2009  +
The hydrologic model was calibrated using hydrologic measurements of WE-38 watershed in PA  +
A grid with initial elevation. Hydrologic A grid with initial elevation. Hydrologic time step and geomorphic time step</br></br>Hydrologic paramters: average rainfall intensity, rainall duration, interstorm period, infiltration capacity, porosity, hydraulic conductivity, aquifer depth, specific yield, PET</br></br>Geomorphic parameters: baselevel lowering rate, diffusivity for hillslope processes, weathering rate, parameters for erosion and sediment transport models for erosion and sediment transport model  +
Infiltration capacity, water balance equation Hydraulic conductivity, 2-D Dupuit groundwater movement equation  +
A grid with 100x100 cells, Typical cells with a resolution of 40x40m  +
elevations of all nodes elevation changes of all nodes  +
Hydrologic processes: Precipitation, infiltration, evapotranspiration, overland flow, saturation-excess runoff, groundwater flow Geomorphic processes: Baselevel lowering, weathering, hillslope processes, erosion, sediment transport  +
Time scale of 10,000 years. Typical time step is 3 hour  +
The Hydrologically Enhanced Basin EvolutioThe Hydrologically Enhanced Basin Evolution Model (HEBEM) is a combined hydrologic/geomorphic model. The hydrologic model simulates precipitation with variability, infiltration, evapotranspiration, overland flow, and groundwater flow, thus producing a spatially and temporally varying water discharge Q that drives fluvial processes in the land surface. The geomorphic model accounts for tectonic forcing, hillslope processes, erosion, and sediment transport. The combined model uses multiple time steps for hydrologic and geomorphic processes. Due to its hydrologic representation, the model is able to investigate the interaction between hydrology and geomorpholgy.action between hydrology and geomorpholgy.  +
970 491 7727  +
Jeffrey  +
Has query"Has query" is a predefined property that represents meta information (in form of a <a target="_blank" rel="nofollow noreferrer noopener" class="external text" href="https://www.semantic-mediawiki.org/wiki/Subobject">subobject</a>) about individual queries and is provided by <a target="_blank" rel="nofollow noreferrer noopener" class="external text" href="https://www.semantic-mediawiki.org/wiki/Help:Special_properties">Semantic MediaWiki</a>.
Colorado State University  +
Last editor is"Last editor is" is a predefined property that contains the page name of the user who created the last revision and is provided by <a target="_blank" rel="nofollow noreferrer noopener" class="external text" href="https://www.semantic-mediawiki.org/wiki/Help:Special_properties">Semantic MediaWiki</a>.
Niemann  +
0  +
Terrestrial  +
basin evolution  +, hydrological  +  and geomorphologic  +
Single  +
Modification date"Modification date" is a predefined property that corresponds to the date of the last modification of a subject and is provided by <a target="_blank" rel="nofollow noreferrer noopener" class="external text" href="https://www.semantic-mediawiki.org/wiki/Help:Special_properties">Semantic MediaWiki</a>.
02:19:17, 17 September 2020  +
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Hydrologically Enhanced Basin Evolution Model  +
970 491 3517  +
Dept of Civil and Environmental Engineering  +
Campus Delivery 1372  +
80523  +
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Fortran77  +, Fortran90  +  and C  +
Colorado  +
Model developer  +