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Identification of runoff generation processes - Impact of different forest types on soil-water interrelations and floods.

Journal of Hydrology. Bd. 409. H. 3-4. 2011 S. 1 - 14

Erscheinungsjahr: 2011

ISBN/ISSN: 0022-1694

Publikationstyp: Zeitschriftenaufsatz

Sprache: Englisch

GeprüftBibliothek

Inhaltszusammenfassung


Research highlights: >Sprinkling experiments are appropriate to identify various runoff processes >Runoff generation at selected afforestations is comparable with arable land >Soil properties were confirmed as the crucial factor for runoff generation >Soil properties have more influence on runoff generation than forest types >Implementation of expert knowledge is important for sustainable forest planning In a changing climate extreme weather events including convective storm rainfal...Research highlights: >Sprinkling experiments are appropriate to identify various runoff processes >Runoff generation at selected afforestations is comparable with arable land >Soil properties were confirmed as the crucial factor for runoff generation >Soil properties have more influence on runoff generation than forest types >Implementation of expert knowledge is important for sustainable forest planning In a changing climate extreme weather events including convective storm rainfalls are expected to generate an increasing number of floods threatening small catchments. To improve the understanding of soil-water interrelations in different forest types and associated flood generation, a series of sprinkling experiments was conducted in the low-mountain ranges of Southwest Germany. The experiments were at hill-slope scale and involved afforestations following agricultural land-use as well as established forest stands. Several different runoff processes were identified. The soils under recent afforestations still possessed the physical conditions and similar runoff formation processes of the former agricultural soils. The soils under established forests were relatively porous with high infiltration and water conductivity rates, and consequently reduced occurrence of surface runoff. However, compacted subsoil layers under both agricultural and forest use hindered or even prevented further vertical seepage. The subsurface flow above these compacted soil layers thus contributes to flood generation. Hence, soil properties were confirmed as one of the crucial factors for runoff generation. We strongly recommend to consider soil characteristics and, where applicable, the use of amelioration tools in further forest planning. This will help to improve water retention and storage capacities, and enhance the flood protection function of forests. Identification of runoff processes – The impact of different forest types and soil properties on runoff formation and floods. Available from: https://www.researchgate.net/publication/251473451_Identification_of_runoff_processes_-_The_impact_of_different_forest_types_and_soil_properties_on_runoff_formation_and_floods [accessed Nov 10 2017].» weiterlesen» einklappen

  • Identification
  • runoff process
  • forest type
  • soil property
  • flood

Autoren


Hümann, Marco (Autor)
Schüler, Gebhard (Autor)
Schneider, Raimund (Autor)
Caspary, Thomas (Autor)
Johst, Margret (Autor)

Klassifikation


DDC Sachgruppe:
Naturwissenschaften

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