Raster commands

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GRASS GIS 6.0.2

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Raster commands


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r.averageFinds the average of values in a cover map within areas assigned the same category value in a user-specified base map.
r.basins.fillGenerates a raster map layer showing watershed subbasins.
r.bilinearBilinear interpolation utility for raster map layers.
r.blendBlends color components of 2 raster maps by a given % first map'
r.bufferCreates a raster map layer showing buffer zones surrounding cells that contain non-NULL category values.
r.catsPrints category values and labels associated with user-specified raster map layers.
r.circleCreates a raster map containing concentric rings around a given point.
r.clumpRecategorizes data in a raster map layer by grouping cells that form physically discrete areas into unique categories.
r.coinTabulates the mutual occurrence (coincidence) of categories for two raster map layers.
r.colorsCreates/Modifies the color table associated with a raster map layer.
r.compositeCombines red, green and blue map layers into a single composite map layer.
r.compressCompresses and decompresses raster files.
r.contourProduces a GRASS binary vector map of specified contours from GRASS raster map layer.
r.costOutputs a raster map layer showing the cumulative cost of moving between different geographic locations on an input raster map layer whose cell category values represent cost.
r.covarOutputs a covariance/correlation matrix for user-specified raster map layer(s).
r.crossCreates a cross product of the category values from multiple raster map layers.
r.describePrints terse list of category values found in a raster map layer.
r.digit
r.distanceLocates the closest points between objects in two raster maps.
r.drainTraces a flow through an elevation model on a raster map layer.
r.fill.dirFilters and generates a depressionless elevation map and a flow direction map from a given elevation layer.
r.fillnullsFills no-data areas in raster maps using v.surf.rst splines interpolation.
r.flowConstruction of slope curves (flowlines), flowpath lengths, and flowline densities (upslope areas) from a raster digital elevation model(DEM).
r.growGenerates a raster map layerwith contiguous areas grown by one cell.
r.hisGenerates red, green and blue raster map layers combining hue, intensity, and saturation (his) values from user-specified input raster map layers.
r.in.arcConvert an ESRI ARC/INFO ascii raster file (GRID) into a (binary) raster map layer.
r.in.asciiConvert an ASCII raster text file into a (binary) raster map layer.
r.in.binImport a binary raster file into a GRASS raster map layer.
r.infoOutputs basic information about a user-specified raster map layer.
r.in.gdalImport GDAL supported raster file into a binary raster map layer.
r.in.gridatbImports GRIDATB.FOR map file (TOPMODEL) into GRASS raster map.
r.in.matImport a binary MAT-File(v4) to a GRASS raster.
r.in.polyCreate raster maps from ascii polygon/line data files in the current directory.
r.in.srtmImport SRTM HGT files into GRASS.
r.kappaCalculate error matrix and kappa parameter for accuracy assessment of classification result.
r.le.patch
r.le.pixel
r.le.setupr.le.setup
r.le.trace
r.losLine-of-sight raster analysis program.
r.mapcalcr.mapcalc
r.mapcalculatorr.mapcalculator - Calculates new raster map from r.mapcalc expression.
r.medianFinds the median of values in a cover map within areas assigned the same category value in a user-specified base map.
r.mfilterRaster file matrix filter.
r.modeFinds the mode of values in a cover map within areas assigned the same category value in a user-specified base map.
r.neighborsMakes each cell category value a function of the category values assigned to the cells around it, and stores new cell values in an output raster map layer.
r.nullThe function of r.null is to explicitly create the NULL-value bitmap file.
r.out.arcConverts a raster map layer into an ESRI ARCGRID file.
r.out.asciiConverts a raster map layer into an ASCII text file.
r.out.binExports a GRASS raster to a binary array.
r.out.gdalExports GRASS raster data into various formats (requires GDAL).
r.out.gridatbExports GRASS raster map to GRIDATB.FOR map file (TOPMODEL).
r.out.matExports a GRASS raster to a binary MAT-File.
r.out.mpegRaster File Series to MPEG Conversion Program.
r.out.pngExport GRASS raster as non-georeferenced PNG image format.
r.out.povConverts a raster map layer into a height-field file for POVRAY.
r.out.ppm3Converts 3 GRASS raster layers (R,G,B) to a PPM image file at the pixel resolution of the CURRENTLY DEFINED REGION.
r.out.ppmConverts a GRASS raster file to a PPM image file at the pixel resolution of the CURRENTLY DEFINED REGION.
r.out.tiffExports a GRASS raster file to a 8/24bit TIFF image file at the pixel resolution of the currently defined region.
r.param.scaleExtracts terrain parameters from a DEM. Uses a multi-scalar approach by taking fitting quadratic parameters to any size window (via least squares).
r.patchCreates a composite raster map layer by using known category values from one (or more) map layer(s) to fill in areas of "no data" in another map layer.
r.planeCreates raster plane map given dip (inclination), aspect (azimuth), and one point.
r.profileOutputs the raster map layer values lying on user-defined line(s).
r.projRe-project a raster map from one location to the current location.
r.quantThis routine produces the quantization file for a floating-point map.
r.randomCreates a raster map layer and vector point map containing randomly located sites.
r.random.surfaceGenerates random surface(s) with spatial dependence.
r.reclass.areaReclasses a raster map greater or less than user specified area size (in hectares).
r.reclassCreates a new map layer whose category values are based upon the user's reclassification of categories in an existing raster map layer.
r.recodeRecode raster maps.
r.regionSets the boundary definitions for a raster map.
r.regression.lineCalculates linear regression from two raster maps: y = a + b*x
r.reportReports statistics for raster map layers.
r.resampleGRASS raster map layer data resampling capability.
r.resamp.rstReinterpolates and computes topographic analysis from input raster file to a new raster file (possibly with different resolution) using regularized spline with tension and smoothing.
r.rescale.eqRescales histogram equalized the range of categoryvalues in a raster map layer.
r.rescaleRescales the range of category values in a raster map layer.
r.seriesMakes each output cell value a function of the values assigned to the corresponding cells in the input raster map layers.
r.shaded.reliefCreates shaded relief map from an elevation map (DEM).
r.slope.aspectGenerates raster map layers of slope, aspect, curvatures and partial derivatives from a raster map layer of true elevation values. Aspect is calculated counterclockwise from east.
r.spreadSimulates elliptically anisotropic spread on a graphics window and generates a raster map of the cumulative time of spread, given raster maps containing the rates of spread (ROS), the ROS directions and the spread origins. It optionally produces raster maps to contain backlink UTM coordinates for tracing spread paths.
r.spreadpathRecursively traces the least cost path backwards to cells from which the cumulative cost was determined.
r.statisticsCategory or object oriented statistics.
r.statsGenerates area statistics for raster map layers.
r.sumSums up the raster cell values.
r.sunComputes direct (beam), diffuse and reflected solar irradiation raster maps for given day, latitude, surface and atmospheric conditions. Solar parameters (e.g. sunrise, sunset times, declination, extraterrestrial irradiance, daylight length) are saved in the map history file. Alternatively, a local time can be specified to compute solar incidence angle and/or irradiance raster maps. The shadowing effect of the topography is optionally incorporated.
r.sunmaskCalculates cast shadow areas from sun position and DEM. Either A: exact sun position is specified, or B: date/time to calculate the sun position by r.sunmask itself.
r.surf.areaSurface area estimation for rasters.
r.surf.contourComando che genera una superficie da un contorno rasterizzato.
r.surf.fractalGRASS module to create a fractal surface of a given fractal dimension. Uses spectral synthesis method. Can create intermediate layers showing the build up of different spectral coefficients (see Saupe, pp.106-107 for an example of this). Use this module to generate naturally looking synthetical elevation models (DEM).
r.surf.gaussGRASS module to produce a raster map layer of gaussian deviates whose mean and standard deviation can be expressed by the user. It uses a gaussian random number generator.
r.surf.idw2Surface generation program.
r.surf.idwSurface interpolation utility for raster map layers.
r.surf.randomProduces a raster map layer of uniform random deviates whose range can be expressed by the user.
r.terraflowFlow computation for massive grids (Float version).
r.textureGenerate images with textural features from a raster map.
r.thinThins non-zero cells that denote linear features in a raster map layer.
r.timestampPrint/add/remove a timestamp for a raster map.
r.topidxCreates topographic index, ln(a/tan(beta)), map from elevation map.
r.topmodelSimulates TOPMODEL which is a physically based hydrologic model.
r.to.vectConverts a raster map into a vector map layer.
r.transectOutputs raster map layer values lying along user defined transect line(s).
r.univarCalculates univariate statistics from the non-null cells of a raster map.
r.univar.shCalculates univariate statistics from a GRASS raster map.
r.water.outletWatershed basin creation program.
r.watershedWatershed basin analysis program.
r.whatQueries raster map layers on their category values and category labels.
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