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    Brand new, In English, Fast shipping from London, UK; Tout neuf, en anglais, expédition rapide depuis Londres, Royaume-Uni;ria9783642261152_dbm

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        Avis sur Landform - Structure, Evolution, Process Control Format Broché  - Livre Sciences de la vie et de la terre

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        Présentation Landform - Structure, Evolution, Process Control Format Broché

         - Livre Sciences de la vie et de la terre

        Livre Sciences de la vie et de la terre - 01/03/2012 - Broché - Langue : Anglais

        . .

      • Editeur : Springer-Verlag Gmbh
      • Langue : Anglais
      • Parution : 01/03/2012
      • Format : Moyen, de 350g à 1kg
      • Nombre de pages : 272
      • Expédition : 417
      • Dimensions : 23.5 x 15.5 x 1.5
      • ISBN : 3642261159



      • Résumé :
        Cartographic Relief Presentation Revisited - Forty Years after Eduard Imhof.- New GML-Based Application Schema for Landforms, Processes and Their Interaction.- Semi-Automatic Digital Landform Mapping.- A Perona-Malik Type Method in Shape Generalization of Digital Elevation Models.- The Role of Landscape Processes within the Climate System.- The Impact of Landform Structure on the Formation of Fog - Numerical Simulations with COSMO-FOG.- Influence of Drainage Parameterization and Precipitation Analysis on Discharge Simulation in the Sieg River Catchment.- Landform - Hydrology Feedbacks.- Hydrological Analyses as a Prerequisite for Soil Erosion Modeling - Landscape Related Studies in a Mesoscale Hydrological Catchment.- Snow Cover Duration in Relation to Topography in the Loetschental, Switzerland.- Sediment Transfer in Steep Upland Catchments (Northern England, UK): Landform and Sediment Source Coupling.- Volume Estimation, Kinematics and Sediment Transfer Rates of Active Rockglaciers in the Turtmann Valley, Switzerland.- Patterns of Multiannual Aggradation of Permafrost in Rock Walls with and Without Hydraulic Interconnectivity (Steint?lli, Valley of Zermatt, Swiss Alps).- Resilience, Integrity and Ecosystem Dynamics: Bridging Ecosystem Theory and Management.- Analyzing Spatio-Temporal Hydrological Processes and Related Gradients to Improve Hydrological Modeling in High Mountains....

        Biographie:

        Prof. Richard Dikau has a full professorship at the department of geography. His scientific focus includesthe study of geomorphology, geomorphometry, permafrost research and natural hazards. From 1998-2007 he was the chair of the interdisciplinary research training group 437 Landform - a structured and variable boundary layer.

        Dr. Jan-Christoph Otto works on high mountain geomorphology and sediment budgets. He is a former member of the research training group 437 Landform - a structured and variable boundary layer and graduated within this programme on high mountain sediment storage and sediment budgets.

        Sommaire:
        Cartographic Relief Presentation Revisited ? Forty Years after Eduard Imhof.- New GML-Based Application Schema for Landforms, Processes and Their Interaction.- Semi-Automatic Digital Landform Mapping.- A Perona-Malik Type Method in Shape Generalization of Digital Elevation Models.- The Role of Landscape Processes within the Climate System.- The Impact of Landform Structure on the Formation of Fog ? Numerical Simulations with COSMO-FOG.- Influence of Drainage Parameterization and Precipitation Analysis on Discharge Simulation in the Sieg River Catchment.- Landform ? Hydrology Feedbacks.- Hydrological Analyses as a Prerequisite for Soil Erosion Modeling ? Landscape Related Studies in a Mesoscale Hydrological Catchment.- Snow Cover Duration in Relation to Topography in the Loetschental, Switzerland.- Sediment Transfer in Steep Upland Catchments (Northern England, UK): Landform and Sediment Source Coupling.- Volume Estimation, Kinematics and Sediment Transfer Rates of Active Rockglaciers in the Turtmann Valley, Switzerland.- Patterns of Multiannual Aggradation of Permafrost in Rock Walls with and Without Hydraulic Interconnectivity (Steint?lli, Valley of Zermatt, Swiss Alps).- Resilience, Integrity and Ecosystem Dynamics: Bridging Ecosystem Theory and Management.- Analyzing Spatio-Temporal Hydrological Processes and Related Gradients to Improve Hydrological Modeling in High Mountains.

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