NAME
r.green.biomassfor.technical  - Estimates the quantity of woody biomass obtained from a forest surface where extraction is possible given a particular level of mechanisation
KEYWORDS
raster, 
biomass
SYNOPSIS
r.green.biomassfor.technical
r.green.biomassfor.technical --help
r.green.biomassfor.technical [-r] dtm=name forest=name boundaries=name forest_column_yield=string forest_column_yield_surface=string forest_column_management=string forest_column_treatment=string forest_roads=name output_basename=name  [forest_column_roughness=string]   [rivers=name]   [lakes=name]   [slp_min_cc=float]   [slp_max_cc=float]   [dist_max_cc=float]   [slp_max_fw=float]   [dist_max_fw=float]   [slp_max_cop=float]   [dist_max_cop=float]   [energy_tops_hf=float]   [energy_cormometric_vol_hf=float]   [energy_tops_cop=float]   [--overwrite]  [--help]  [--verbose]  [--quiet]  [--ui] 
Flags:
- -r
 
- Remove all operational maps
 
- --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:
- dtm=name [required]
 
- Name of Digital terrain model map
 
- forest=name [required]
 
- Name of vector parcel map
 
- Name of vector parcel map
 
- boundaries=name [required]
 
- Name of vector boundaries map (boolean map)
 
- Name of vector boundaries map (boolean map)
 
- forest_column_yield=string [required]
 
- Vector field of yield
 
- forest_column_yield_surface=string [required]
 
- Vector field of stand surface (ha)
 
- forest_column_management=string [required]
 
- Vector field of forest management (1: high forest, 2:coppice)
 
- forest_column_treatment=string [required]
 
- Vector field of forest treatment (1: final felling, 2:thinning)
 
- forest_roads=name [required]
 
- Vector map of forest roads
 
- Vector map of forest roads
 
- output_basename=name [required]
 
- Basename for technical bioenergy (HF,CC and total)
 
- forest_column_roughness=string
 
- Vector field of roughness
 
- rivers=name
 
- Vector map of rivers
 
- Vector map of rivers
 
- lakes=name
 
- Vector map of lakes
 
- Vector map of lakes
 
- slp_min_cc=float
 
- Percent slope lower limit with Cable Crane
 
- Default: 30.
 
- slp_max_cc=float
 
- Percent slope higher limit with Cable Crane
 
- Default: 100.
 
- dist_max_cc=float
 
- Maximum distance with Cable Crane
 
- Default: 800.
 
- slp_max_fw=float
 
- Percent slope higher limit with Forwarder
 
- Default: 30.
 
- dist_max_fw=float
 
- Maximum distance with Forwarder
 
- Default: 600.
 
- slp_max_cop=float
 
- Percent slope higher limit with other techniques for Coppices
 
- Default: 30.
 
- dist_max_cop=float
 
- Maximum distance with other techniques for Coppices
 
- Default: 600.
 
- energy_tops_hf=float
 
- Energy for tops and branches in high forest in MWh/m3
 
- Default: 0.49
 
- energy_cormometric_vol_hf=float
 
- Energy for the whole tree in high forest (tops, branches and stem) in MWh/m3
 
- Default: 1.97
 
- energy_tops_cop=float
 
- Energy for tops and branches for Coppices in MWh/m3
 
- Default: 0.55
 
 
Compute the biomass forestry residual potential considering the technical
constraints of different harvesting techniques.
  r.green,
  r.green.biomassfor
Francesco Geri,
Pietro Zambelli,
Sandro Sacchelli,
Marco Ciolli
SOURCE CODE
  Available at:
  r.green.biomassfor.technical source code
  (history)
  Latest change: Thursday Feb 20 13:02:26 2025 in commit: 53de8196a10ba5a8a9121898ce87861d227137e3
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