NAME
v.gsflow.hruparams - Set parameters for GSFLOW Hydrologic Response Units (HRUs)
KEYWORDS
vector,
stream network,
hydrology,
GSFLOW
SYNOPSIS
v.gsflow.hruparams
v.gsflow.hruparams --help
v.gsflow.hruparams elevation=name [cov_type=name] [soil_type=name] input=name output=name slope=string aspect=string [--overwrite] [--help] [--verbose] [--quiet] [--ui]
Flags:
- --overwrite
- Allow output files to overwrite existing files
- --help
- Print usage summary
- --verbose
- Verbose module output
- --quiet
- Quiet module output
- --ui
- Force launching GUI dialog
Parameters:
- elevation=name [required]
- Elevation raster
- Name of input raster map
- cov_type=name
- land cover: rast or int: 0=bare soil; 1=grass; 2=shrub; 3=tree; 4=conif
- Name of input raster map
- Default: 0
- soil_type=name
- soil: rast or int: 1=sand; 2=loam; 3=clay
- Name of input raster map
- Default: 2
- input=name [required]
- Sub-basins to become HRUs
- Or data source for direct OGR access
- output=name [required]
- HRUs
- Name for output vector map
- slope=string [required]
- Slope [unitless]: r.slope.aspect format=percent zscale=0.01
- aspect=string [required]
- Aspect from r.slope.aspect
v.gsflow.hruparameters uploads required parameters to run the USGS combined groundwater (MODFLOW) and surface-water (PRMS) model GSFLOW to each of the hydrologic response units (HRU) in the study watershed.
Ng, G.-H. C., A. D. Wickert, R. L. McLaughlin, J. La Frenierre, S. Liess, and L. Sabeeri (2016),
Modeling the role of groundwater and vegetation in the hydrological response of tropical
glaciated watersheds to climate change, in AGU Fall Meeting Abstracts, H13L–1590, San
Francisco, CA.
v.gsflow.export
v.gsflow.gravres
v.gsflow.grid
v.gsflow.reaches
v.gsflow.segments
v.gsflow.mapdata
v.stream.inbasin
v.stream.network
Andrew D. Wickert
Last changed: $Date 2018-04-22$
SOURCE CODE
Available at: v.gsflow.hruparams source code (history)
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GRASS Development Team,
GRASS GIS 7.4.5svn Reference Manual