Transport Time Scales in Soil Erosion Modeling

Author:

Lisle I.G.,Sander G.C.1,Parlange J.-Y.2,Rose C.W.3,Hogarth W.L.4,Braddock R.D.3,Stagnitti F.5,Lockington D.A.6,Jomaa S.7,Cheraghi M.8,Barry D.A.8

Affiliation:

1. School of Architecture, Building and Civil Engineering, Loughborough Univ.; Loughborough LE11 3TU UK

2. Dep. of Biological and Environmental Engineering; Cornell Univ.; Ithaca NY 14853-5701

3. Environment, Planning and Architecture; Griffith Univ.; Nathan QLD 4111 Australia

4. Faculty of Science and Information Technology; Univ. of Newcastle; Univ. Drive Callaghan NSW 2308 Australia

5. Federation Univ. Australia; Ballarat VIC 3353 Australia

6. School of Civil Engineering, Univ. of Queensland; St. Lucia QLD 4072 Australia

7. Dep. of Aquatic Ecosystem Analysis and Management; Helmholtz Centre for Environmental Research-UFZ; Brückstr. 3a 39114 Magdeburg Germany

8. Lab. de Technologie Écologique (ECOL); Institut d'ingénierie de l'environnement (IIE), Faculté de l'environnement naturel; architectural et construit (ENAC), Station 2, Ecole Polytechnique Fédérale de Lausanne 1015 Lausanne Switzerland

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Wiley

Subject

Soil Science

Reference32 articles.

1. Nutrient enrichment drives Gulf of Mexico hypoxia;Boesch;Eos Trans. AGU,2009

2. Hysteretic sediment fluxes in rainfall-driven soil erosion: Particle size effects;Cheraghi;Water Resour. Res.,2016

3. Spreading dead zones and consequences for marine ecosystems;Diaz;Science,2008

4. Comparative calculation of suspended sediment loads with respect to hysteresis effects (in the Petzenkirchen catchment, Austria);Eder;J. Hydrol.,2010

5. Evaluation of a dynamic multi-class sediment transport model in a catchment under soil-conservation agriculture;Fiener;Earth Surf. Processes Landforms,2008

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