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  • Fractal analysis to define the drainage network geometry
  • Drainage network ; Fractals ; Geomorphology ; Methodology ; Quantitative analysis ; Structural geomorphology ; Watershed
  • Studies carried out by various authors on a large number of drainage basins have shown that drainage networks, although seemingly irregular from the geometrical point of view, have a partial order which increases with increasing homogeneity
  • of structural conditions. The aims of this study are : to test the view that drainage networks can be described as fractal objects, to measure the dimension of such objects and to evaluate quantitatively their geomorphological significance. Preliminary results
  • show that the proposed methodology may be successfully used for automated, unbiased interpretation of drainage network arrangement. - (NF)
  • Central Italy ; Drainage network ; Fault ; Italy ; Methodology ; Neotectonics ; Stream ; Strike-slip fault ; Tectonics
  • , through the careful examination of the drainage network patterns. To this end a methodology has been defined to infer the existence of strike-slip faults on the basis of the quantitative characteristics of surface drainage and to verify whether
  • Campania ; Drainage network ; Fault ; Italy ; Regional geology ; Statistics ; Tectonics ; Vertical movement ; Volcanism ; Volcano
  • Badlands ; Catchment area;Watershed ; Central Italy ; Drainage network ; Earth surface processes ; Fluvial erosion ; Geomorphometry ; Hydrodynamics ; Italy ; Regional geology ; Slope dynamics ; Stream
  • Abruzzi ; Drainage network ; Fault ; Italy ; Morphometry ; Neotectonics ; Spatial variation ; Statistics ; Structural geomorphology ; Tectonics
  • Central Italy ; Drainage network ; Earth surface processes ; Fault ; Geostatistics ; Italy ; Marche (Italy) ; Marine sediment ; Neotectonics ; Pliocene ; Quantitative analysis ; Quaternary ; Tectonics