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Spatial techniques for soil erosion ...
~
Patil, Rupesh Jayaram.
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Spatial techniques for soil erosion estimation = remote sensing and GIS approach /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Spatial techniques for soil erosion estimation/ by Rupesh Jayaram Patil.
Reminder of title:
remote sensing and GIS approach /
Author:
Patil, Rupesh Jayaram.
Published:
Cham :Springer International Publishing : : 2018.,
Description:
xix, 81 p. :ill., maps, digital ;24 cm.
[NT 15003449]:
Introduction -- Usle - Gis Based Soil Erosion Assessment: An Overview -- Study Area and Data Collection -- Spatial Techniques for Soil Erosion Estimation -- Distributed Soil Erosion Modelling -- Summary, Conclusions and Suggestions for Further Work.
Contained By:
Springer eBooks
Subject:
Soil erosion prediction. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-74286-1
ISBN:
9783319742861
Spatial techniques for soil erosion estimation = remote sensing and GIS approach /
Patil, Rupesh Jayaram.
Spatial techniques for soil erosion estimation
remote sensing and GIS approach /[electronic resource] :by Rupesh Jayaram Patil. - Cham :Springer International Publishing :2018. - xix, 81 p. :ill., maps, digital ;24 cm. - SpringerBriefs in GIS,2367-010X. - SpringerBriefs in GIS..
Introduction -- Usle - Gis Based Soil Erosion Assessment: An Overview -- Study Area and Data Collection -- Spatial Techniques for Soil Erosion Estimation -- Distributed Soil Erosion Modelling -- Summary, Conclusions and Suggestions for Further Work.
This book presents a novel computation of the topographic LS factor of the USLE model to estimate spatial soil erosion. In developing countries, soil erosion is one of the main concerns as it adversely affects agriculture and reduces food production. Therefore, the author presents a particularly relevant approach, as he demonstrates how the C++ programming allows us to identify important erosion stages like detachment and deposition. He does this by assessing the annual rate of soil erosion from the Shakkar River watershed in India using distributed information and applying RS and GIS techniques. He also discusses different approaches that have been proposed to work out the influence of topography on erosion. Simulated and observed data of sediment loss are compared for the period 1992 to 2006.This book provides an easy-to-understand basic piece of soil erosion and hydrological research and reaches out to young researchers and students at the graduate and undergraduate level as well as applicants of soil erosion models.
ISBN: 9783319742861
Standard No.: 10.1007/978-3-319-74286-1doiSubjects--Topical Terms:
3301772
Soil erosion prediction.
LC Class. No.: QH545.S64
Dewey Class. No.: 333.73
Spatial techniques for soil erosion estimation = remote sensing and GIS approach /
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Introduction -- Usle - Gis Based Soil Erosion Assessment: An Overview -- Study Area and Data Collection -- Spatial Techniques for Soil Erosion Estimation -- Distributed Soil Erosion Modelling -- Summary, Conclusions and Suggestions for Further Work.
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This book presents a novel computation of the topographic LS factor of the USLE model to estimate spatial soil erosion. In developing countries, soil erosion is one of the main concerns as it adversely affects agriculture and reduces food production. Therefore, the author presents a particularly relevant approach, as he demonstrates how the C++ programming allows us to identify important erosion stages like detachment and deposition. He does this by assessing the annual rate of soil erosion from the Shakkar River watershed in India using distributed information and applying RS and GIS techniques. He also discusses different approaches that have been proposed to work out the influence of topography on erosion. Simulated and observed data of sediment loss are compared for the period 1992 to 2006.This book provides an easy-to-understand basic piece of soil erosion and hydrological research and reaches out to young researchers and students at the graduate and undergraduate level as well as applicants of soil erosion models.
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Earth and Environmental Science (Springer-11646)
based on 0 review(s)
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W9342596
電子資源
11.線上閱覽_V
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EB QH545.S64
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