Socioeconomic modifications of the universal soil loss equation

While social scientists have long focused on socioeconomic and demographic factors, physical modelers typically study soil loss using physical factors. In the current environment, it is becoming increasingly important to consider both approaches simultaneously for the conservation of soil and water,...

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Main Authors: A. Erol, Ö. Koşkan, M. A. Başaran
Format: Article
Language:English
Published: Copernicus Publications 2015-08-01
Series:Solid Earth
Online Access:http://www.solid-earth.net/6/1025/2015/se-6-1025-2015.pdf
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spelling doaj-d805c5d6259248fabe02844d96880d472020-11-25T00:49:05ZengCopernicus PublicationsSolid Earth1869-95101869-95292015-08-01631025103510.5194/se-6-1025-2015Socioeconomic modifications of the universal soil loss equationA. Erol0Ö. Koşkan1M. A. Başaran2SDÜ Faculty of Forestry, Department of Watershed Management, Isparta, TurkeySDÜ Agricultural Faculty, Department of Biometric Genetics, Isparta, TurkeyWestern Mediterranean Forestry Research Institute, Antalya, TurkeyWhile social scientists have long focused on socioeconomic and demographic factors, physical modelers typically study soil loss using physical factors. In the current environment, it is becoming increasingly important to consider both approaches simultaneously for the conservation of soil and water, and the improvement of land use conditions. This study uses physical and socioeconomic factors to find a coefficient that evaluates the combination of these factors. It aims to determine the effect of socioeconomic factors on soil loss and, in turn, to modify the universal soil loss equation (USLE). The methodology employed in this study specifies that soil loss can be calculated and predicted by comparing the degree of soil loss in watersheds, with and without human influence, given the same overall conditions. A coefficient for socioeconomic factors, therefore, has been determined based on adjoining watersheds (WS I and II), employing simulation methods. Combinations of <i>C</i> and <i>P</i> factors were used in the USLE to find the impact of their contributions to soil loss. The results revealed that these combinations provided good estimation of soil loss amounts for the second watershed, i.e., WS II, from the adjoining watersheds studied in this work. This study shows that a coefficient of 0.008 modified the USLE to reflect the socioeconomic factors, such as settlement, influencing the amount of soil loss in the studied watersheds.http://www.solid-earth.net/6/1025/2015/se-6-1025-2015.pdf
collection DOAJ
language English
format Article
sources DOAJ
author A. Erol
Ö. Koşkan
M. A. Başaran
spellingShingle A. Erol
Ö. Koşkan
M. A. Başaran
Socioeconomic modifications of the universal soil loss equation
Solid Earth
author_facet A. Erol
Ö. Koşkan
M. A. Başaran
author_sort A. Erol
title Socioeconomic modifications of the universal soil loss equation
title_short Socioeconomic modifications of the universal soil loss equation
title_full Socioeconomic modifications of the universal soil loss equation
title_fullStr Socioeconomic modifications of the universal soil loss equation
title_full_unstemmed Socioeconomic modifications of the universal soil loss equation
title_sort socioeconomic modifications of the universal soil loss equation
publisher Copernicus Publications
series Solid Earth
issn 1869-9510
1869-9529
publishDate 2015-08-01
description While social scientists have long focused on socioeconomic and demographic factors, physical modelers typically study soil loss using physical factors. In the current environment, it is becoming increasingly important to consider both approaches simultaneously for the conservation of soil and water, and the improvement of land use conditions. This study uses physical and socioeconomic factors to find a coefficient that evaluates the combination of these factors. It aims to determine the effect of socioeconomic factors on soil loss and, in turn, to modify the universal soil loss equation (USLE). The methodology employed in this study specifies that soil loss can be calculated and predicted by comparing the degree of soil loss in watersheds, with and without human influence, given the same overall conditions. A coefficient for socioeconomic factors, therefore, has been determined based on adjoining watersheds (WS I and II), employing simulation methods. Combinations of <i>C</i> and <i>P</i> factors were used in the USLE to find the impact of their contributions to soil loss. The results revealed that these combinations provided good estimation of soil loss amounts for the second watershed, i.e., WS II, from the adjoining watersheds studied in this work. This study shows that a coefficient of 0.008 modified the USLE to reflect the socioeconomic factors, such as settlement, influencing the amount of soil loss in the studied watersheds.
url http://www.solid-earth.net/6/1025/2015/se-6-1025-2015.pdf
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AT okoskan socioeconomicmodificationsoftheuniversalsoillossequation
AT mabasaran socioeconomicmodificationsoftheuniversalsoillossequation
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