Relationship Between Erodibility and Properties of Soils

Relationship Between Erodibility and Properties of Soils
Author :
Publisher :
Total Pages : 327
Release :
ISBN-10 : 0309480752
ISBN-13 : 9780309480758
Rating : 4/5 (52 Downloads)

Synopsis Relationship Between Erodibility and Properties of Soils by : J.-L. Briaud

TRB's National Cooperative Highway Research Program (NCHRP) has released NCHRP Research Report 915: Relationship Between Erodibility and Properties of Soils, which provides reliable and simple equations quantifying the erodibility of soils based on soil properties. The report presents a detailed analysis of the issue. In addition, the project that developed the report also produced a searchable spreadsheet that uses statistical techniques to relate geotechnical properties to soil erodibility. The spreadsheet, NCHRP Erosion, includes a searchable database that includes compiled erosion data from the literature review and a plethora of erosion tests. It contains equations which may be used to estimate the erosion resistance of soil and determine whether erosion tests are needed.

Relationship Between Erodibility and Properties of Soils

Relationship Between Erodibility and Properties of Soils
Author :
Publisher :
Total Pages : 327
Release :
ISBN-10 : OCLC:1130312041
ISBN-13 :
Rating : 4/5 (41 Downloads)

Synopsis Relationship Between Erodibility and Properties of Soils by : J.-L. Briaud

TRB's National Cooperative Highway Research Program (NCHRP) has released NCHRP Research Report 915: Relationship Between Erodibility and Properties of Soils, which provides reliable and simple equations quantifying the erodibility of soils based on soil properties. The report presents a detailed analysis of the issue. In addition, the project that developed the report also produced a searchable spreadsheet that uses statistical techniques to relate geotechnical properties to soil erodibility. The spreadsheet, NCHRP Erosion, includes a searchable database that includes compiled erosion data from the literature review and a plethora of erosion tests. It contains equations which may be used to estimate the erosion resistance of soil and determine whether erosion tests are needed.

Predicting Rainfall Erosion Losses

Predicting Rainfall Erosion Losses
Author :
Publisher :
Total Pages : 70
Release :
ISBN-10 : UVA:X001754985
ISBN-13 :
Rating : 4/5 (85 Downloads)

Synopsis Predicting Rainfall Erosion Losses by : Walter H. Wischmeier

The Universal Soil Loss Equation (USLE) enables planners to predict the average rate of soil erosion for each feasible alternative combination of crop system and management practices in association with a specified soil type, rainfall pattern, and topography. When these predicted losses are compared with given soil loss tolerances, they provide specific guidelines for effecting erosion control within specified limits. The equation groups the numerous interrelated physical and management parameters that influence erosion rate under six major factors whose site-specific values can be expressed numerically. A half century of erosion research in many States has supplied information from which at least approximate values of the USLE factors can be obtained for specified farm fields or other small erosion prone areas throughout the United States. Tables and charts presented in this handbook make this information readily available for field use. Significant limitations in the available data are identified.

Relationship Between Erodibility and Properties of Soils

Relationship Between Erodibility and Properties of Soils
Author :
Publisher :
Total Pages : 327
Release :
ISBN-10 : 0309480752
ISBN-13 : 9780309480758
Rating : 4/5 (52 Downloads)

Synopsis Relationship Between Erodibility and Properties of Soils by : J.-L. Briaud

TRB's National Cooperative Highway Research Program (NCHRP) has released NCHRP Research Report 915: Relationship Between Erodibility and Properties of Soils, which provides reliable and simple equations quantifying the erodibility of soils based on soil properties. The report presents a detailed analysis of the issue. In addition, the project that developed the report also produced a searchable spreadsheet that uses statistical techniques to relate geotechnical properties to soil erodibility. The spreadsheet, NCHRP Erosion, includes a searchable database that includes compiled erosion data from the literature review and a plethora of erosion tests. It contains equations which may be used to estimate the erosion resistance of soil and determine whether erosion tests are needed.

Predicting Soil Erosion by Water

Predicting Soil Erosion by Water
Author :
Publisher :
Total Pages : 412
Release :
ISBN-10 : UVA:X005011851
ISBN-13 :
Rating : 4/5 (51 Downloads)

Synopsis Predicting Soil Erosion by Water by : Kenneth G. Renard

Introduction and history; Rainfall-runoff erosivity factor (R); Soil erodibility factor (K); Slope length and steepness factors (LS); Cover-management factor (C); Support practice factor (P); RUSLE user guide; Coversion to SI metric system; Calculation of EI from recording-raingage records; Estimating random roughness in the field; Parameter values for major agricultural crops and tillage operations.

Soil erosion: the greatest challenge for sustainable soil management

Soil erosion: the greatest challenge for sustainable soil management
Author :
Publisher : Food & Agriculture Org.
Total Pages : 104
Release :
ISBN-10 : 9789251314265
ISBN-13 : 9251314268
Rating : 4/5 (65 Downloads)

Synopsis Soil erosion: the greatest challenge for sustainable soil management by : Food and Agriculture Organization of the United Nations

Despite almost a century of research and extension efforts, soil erosion by water, wind and tillage continues to be the greatest threat to soil health and soil ecosystem services in many regions of the world. Our understanding of the physical processes of erosion and the controls on those processes has been firmly established. Nevertheless, some elements remain controversial. It is often these controversial questions that hamper efforts to implement sound erosion control measures in many areas of the world. This book, released in the framework of the Global Symposium on Soil Erosion (15-17 May 2019) reviews the state-of-the-art information related to all topics related to soil erosion.

Modelling Soil Erosion by Water

Modelling Soil Erosion by Water
Author :
Publisher : Springer Science & Business Media
Total Pages : 552
Release :
ISBN-10 : 9783642589133
ISBN-13 : 3642589138
Rating : 4/5 (33 Downloads)

Synopsis Modelling Soil Erosion by Water by : John Boardman

TO THE MODEL EVALUATION 1. MODELLING SOIL EROSION BY WATER l 2 John Boardman and David Favis-Mortlock 1 School of Geography and Environmental Change Unit Mansfield Road University of Oxford Oxford OX1 3TB UK 2 Environmental Change Unit University of Oxford 5 South Parks Road Oxford OX1 3UB UK Introduction This volume is the Proceedings of the NATO Advanced Research Workshop 'Global Change: Modelling Soil Erosion by Water', which was held on II-14th September 1995, at the University of Oxford, UK. The meeting was also one of a series organised by the IGBP 1 GCTE Soil Erosion Network, which is a component of GCTE's Land Degradation Task (3.3.2) (Ingram et aI., 1996; Valentin, this volume). One aim of the GCTE Soil Erosion Network is to evaluate the suitability of existing soil erosion models for predicting the possible impacts of global change upon soil erosion. Due to the wide range of erosion models currently, in use or under development, it was decided to evaluate models in the following sequence Favis-Mortlock et al., 1996): • field-scale water erosion models • catchmenr-scale water erosion models • wind erosion models • models with a landscape-scale and larger focus. As part of this strategy, the first stage of the GCTE validation of field-scale erosion models was carried out at the Oxford NATO-ARW. I A list of Acronyms fonns Appendix A.

Soil Physical Measurement and Interpretation for Land Evaluation

Soil Physical Measurement and Interpretation for Land Evaluation
Author :
Publisher : CSIRO PUBLISHING
Total Pages : 392
Release :
ISBN-10 : 9780643099593
ISBN-13 : 064309959X
Rating : 4/5 (93 Downloads)

Synopsis Soil Physical Measurement and Interpretation for Land Evaluation by : Keppel Coughlan

Soil physical measurements are essential for solving many natural resource management problems. This operational laboratory and field handbook provides, for the first time, a standard set of methods that are cost-effective and well suited to land resource survey. It provides: *practical guidelines on the soil physical measurements across a range of soils, climates and land uses; *straightforward descriptions for each method (including common pitfalls) that can be applied by people with a rudimentary knowledge of soil physics, and *guidelines on the interpretation of results and integration with land resource assessment. Soil Physical Measurement And Interpretation for Land Evaluation begins with an introduction to land evaluation and then outlines procedures for field sampling. Twenty detailed chapters cover pore space relations, water retention, hydraulic conductivity, water table depth, dispersion, aggregation, particle size, shrinkage, Atterburg limits and strength. The book includes procedures for estimating soil physical properties from more readily available data and shows how soil physical data can be integrated into land planning and management decisions.

Proceedings of the Indian Geotechnical Conference 2019

Proceedings of the Indian Geotechnical Conference 2019
Author :
Publisher : Springer Nature
Total Pages : 766
Release :
ISBN-10 : 9789813363465
ISBN-13 : 9813363460
Rating : 4/5 (65 Downloads)

Synopsis Proceedings of the Indian Geotechnical Conference 2019 by : Satyajit Patel

This book comprises select proceedings of the annual conference of the Indian Geotechnical Society. The conference brings together research and case histories on various aspects of geotechnical and geoenvironmental engineering. The book presents papers on geotechnical applications and case histories, covering topics such as (i) Characterization of Geomaterials and Physical Modelling; (ii) Foundations and Deep Excavations; (iii) Soil Stabilization and Ground Improvement; (iv) Geoenvironmental Engineering and Waste Material Utilization; (v) Soil Dynamics and Earthquake Geotechnical Engineering; (vi) Earth Retaining Structures, Dams and Embankments; (vii) Slope Stability and Landslides; (viii) Transportation Geotechnics; (ix) Geosynthetics Applications; (x) Computational, Analytical and Numerical Modelling; (xi) Rock Engineering, Tunnelling and Underground Constructions; (xii) Forensic Geotechnical Engineering and Case Studies; and (xiii) Others Topics: Behaviour of Unsaturated Soils, Offshore and Marine Geotechnics, Remote Sensing and GIS, Field Investigations, Instrumentation and Monitoring, Retrofitting of Geotechnical Structures, Reliability in Geotechnical Engineering, Geotechnical Education, Codes and Standards, and other relevant topics. The contents of this book are of interest to researchers and practicing engineers alike.