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Modelling Soil Erosion by Water

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Cover of 'Modelling Soil Erosion by Water'

Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 Modelling Soil Erosion by Water
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    Chapter 2 Towards an Improved Predictive Capability for Soil Erosion under Global Change
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    Chapter 3 Modelling Soil Erosion in Real Landscapes: A Western European Perspective
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    Chapter 4 Evaluation of Plot Runoff and Erosion Forecasts Using the CSEP and MEDRUSH Models
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    Chapter 5 Evaluation of the Water Erosion Prediction Project (WEPP) Model for Hillslopes
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    Chapter 6 GLEAMS Model Evaluation — Hydrology and Erosion Components
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    Chapter 7 EUROSEM: An Evaluation with Single Event Data from the C5 Watershed, Oklahoma, USA
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    Chapter 8 Comparison of Simulated and Observed Runoff and Soil Loss on Three Small United States Watersheds
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    Chapter 9 Validation of Field-Scale Soil Erosion Models Using Common Datasets
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    Chapter 10 Predicting Runoff in Semiarid Woodlands: Evaluation of the WEPP Model
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    Chapter 11 Evaluation of Field-Scale Erosion Models on the UK South Downs
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    Chapter 12 Modelling Across Scales: The Medalus Family of Models
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    Chapter 13 Problems Regarding the Use of Soil Erosion Models
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    Chapter 14 Cross-Scale Aspects of EPA Erosion Studies
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    Chapter 15 Scale Issues and a Scale Transfer Method for Erosion Modelling
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    Chapter 16 Infiltration for Soil Erosion Models: Some Temporal and Spatial Complications
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    Chapter 17 Saturation Overland Flow on Loess Soils in the Netherlands
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    Chapter 18 Incorporating Crusting Processes in Erosion Models
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    Chapter 19 The Role of Soil Aggregates in Soil Erosion Processes
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    Chapter 20 Process-Based Approaches to Modelling Soil Erosion
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    Chapter 21 Sensitivity of Sediment-Transport Equations to Errors in Hydraulic Models of Overland Flow
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    Chapter 22 Gully Erosion: Importance and Model Implications
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    Chapter 23 Field Data and Erosion Models
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    Chapter 24 Effects of Agricultural Land Use on Spatial and Temporal Distribution of Soil Erosion in Small Catchments: Implications for Modelling
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    Chapter 25 Sensitivity of the Model LISEM to Variables Related to Agriculture
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    Chapter 26 Applying GIS to Catchment-Scale Soil Erosion Modelling
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    Chapter 27 Snowmelt and Frozen Soils in Simulation Models
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    Chapter 28 The Use of USLE Components in Models
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    Chapter 29 The EUROSEM Model
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    Chapter 30 Griffith University Erosion System Template (GUEST)
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    Chapter 31 A Continuous Catchment-Scale Erosion Model
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    Chapter 32 LISEM: A Physically-Based Hydrologic and Soil Erosion Catchment Model
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    Chapter 33 APEX: A New Tool for Predicting the Effects of Climate and CO 2 Changes on Erosion and Water Quality
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    Chapter 34 A Dynamic Model of Gully Erosion
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    Chapter 35 Alternative Approaches to Soil Erosion Prediction and Conservation Using Expert Systems and Neural Networks
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    Chapter 36 Soil Erosion Modelling in Hungary
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    Chapter 37 Definition and Mapping of Desertification Units in Mediterranean Areas under Rainfed Cereals
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    Chapter 38 Hydrological and Erosion Processes in the Research Catchments of Vallcebre (Pyrenees)
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    Chapter 39 Modelling Soil Erosion by Water: Some Conclusions
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Title
Modelling Soil Erosion by Water
Published by
Springer-Verlag Berlin Heidelberg, January 1998
DOI 10.1007/978-3-642-58913-3
ISBNs
978-3-64-263787-2, 978-3-64-258913-3
Editors

John Boardman, David Favis-Mortlock

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 23 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 23 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 4 17%
Researcher 3 13%
Student > Master 3 13%
Student > Bachelor 2 9%
Student > Doctoral Student 2 9%
Other 1 4%
Unknown 8 35%
Readers by discipline Count As %
Earth and Planetary Sciences 6 26%
Environmental Science 4 17%
Agricultural and Biological Sciences 3 13%
Mathematics 1 4%
Engineering 1 4%
Other 0 0%
Unknown 8 35%