Reprint

Soil Erosion Measurement Techniques and Field Experiments

Edited by
May 2024
210 pages
  • ISBN978-3-7258-0938-7 (Hardback)
  • ISBN978-3-7258-0937-0 (PDF)

This book is a reprint of the Special Issue Soil Erosion Measurement Techniques and Field Experiments that was published in

Biology & Life Sciences
Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Public Health & Healthcare
Summary

This Reprint is a collection of papers by international authors dealing with experimental sites for measuring soil erosion at different spatial (plot, hillslope, basin) scales and field experiments that aim to study the soil erosion processes (interrill, rill, and gully erosion). Papers dealing with new methods and procedures for measuring soil erosion processes (e.g., three-dimensional photoreconstruction techniques, measurement of erosion features using aerial and terrestrial acquisition platforms, and tracers) are also included in this Reprint.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
soil erosion; water erosion; flume test; experimental tests; WEPP model; slope profile; concave profile; convex profile; rill erosion; rill hydraulics; soil erosion; microbial biomass; basal soil respiration; cover crop; no-tillage; soil loss; plot measurements; interrill; rill; physical model concept; SfM technique; USLE; remote sensing; soil water erosion; Copernicus Sentinel-1; runoff thresholds; runoff generation; rainfall runoff erosivity factor; runoff models; erosion models; hydrological processes seasonality; gully susceptibility; weight of evidence (WoE); logistic regression (LR); ensemble; soil loss; Kakia-Esamburmbur; Narok; hole erosion test (HET); internal erosion; piping erosion; poorly graded cohesionless soil; soil stabilization; well-graded cohesionless soil; erosion control management; hydrological parameters; runoff risk; Rif; agro-sylvo-pastoral systems; olive trees; agroforestry; soil erosion management; Mediterranean; soil water erosion; USLE models; plot scale; artificial intelligence; data-driven approach; SERLAB experimental site; forest wildfire; mountain areas; burned logs; soil erosion; erosion control; erosion barrier; runoff; sediment yield; forest regeneration; monitoring; suspended sediment concentrations; streamflow; sediment rating curves; specific sediment load; temporary rivers; n/a

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