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From CSDMS
Yes  +
62  +
Boulder  +
No but possible  +
Single Processor  +
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>.
02:14:54, 1 February 2018  +
The model is tested against three known analytical solutions (see Shobe et al., 2017 for details).  +
The key equations and parameters are described in Shobe et al (2017, Geoscientific Model Development).  +
Length scale should be reach or larger (~100m and up). Run time depends on grid size and resolution.  +
Becomes very slow if run on domains with pits. Options include filling pits before running the model, or using the Landlab DepressionFinderAndRouter.  +
Returns/updates Landlab grid fields: 'topographic__elevation' : Topographic surface elevation 'bedrock__elevation' : Bedrock surface elevation 'soil__depth' : Depth of alluvial layer on river bed 'sediment__flux' : Sediment flux out of each grid node  +
Fluvial sediment erosion and deposition, fluvial bedrock erosion, the bedrock cover effect.  +
Time scale will be set by discharge calculation method. The model is in general intended for annual to geological time scales, but shorter time scales may be used if Landlab dynamic flow routing components are employed.  +
Only maintenance  +
The Landlab SPACE (Stream Power with AlluvThe Landlab SPACE (Stream Power with Alluvium Conservation and Entrainment) enables modeling of bedrock, alluviated, and bedrock-alluvial rivers by simultaneously conserving mass in three reservoirs: the water column, the alluvial bed, and the underlying bedrock. SPACE allows dynamic transitions between detachment-limited, transport-limited, and intermediate states. SPACE calculates sediment fluxes, alluvial layer thickness, and bedrock erosion at all nodes within the model domain. An extended description of the model may be found in Shobe et al (2017, Geoscientific Model Development).l (2017, Geoscientific Model Development).  +
Charles  +
1  +
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>.
Passed in as arguments in Landlab component call  +
CIRES and Department of Geological Sciences, University of Colorado  +
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>.
Shobe  +
0.11  +
variable  +
Terrestrial  +
LandLab  +
Landlab Stream Power with Alluvium Conservation and Entrainment component  +
landlab  +, calculation  +, erosion  +, stream power  +, conservation and entrainment  +, simultaneously conserving mass  +, power with alluvium  +, alluvium conservation  +, landlab space  +, enables modeling  +, water column  +, bedrock-alluvial rivers  +, rivers by simultaneously  +, simultaneously conserving  +, conserving mass  +, geoscientific model development  +, alluvial bed  +, stream  +, river erosion  +, sediment transport  +, bedrock erosion  +, landscape evolution  +  and space  +
River Erosion  +, Sediment Transport  +, Bedrock Erosion  +  and Landscape Evolution  +
Media:SPACE manual and examples.zip  +
Single  +
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02:17:33, 17 September 2020  +
2  +
Landlab component for 2-D calculation of fluvial sediment transport and bedrock erosion  +
Landlab grid field  +
UCB 399  +
80309-0399  +
BSD or MIT X11  +
variable  +
Through web repository  +
https://github.com/landlab/landlab  +
Continental  +, Landscape-Scale  +, Reach-Scale  +, Regional-Scale  +  and Watershed-Scale  +
Colorado  +
Unix  +, Linux  +, Mac OS  +  and Windows  +
Model developer  +