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Land-use adjustment with a modified soil loss evaluation method supported by GIS

Land-use structure information is of significance in evaluation of soil loss owing to the contributions of various land-use patterns with different relative importance to soil and water conservation. In previous studies, a land-use structure characteristic index ( SI), defined as the sum of products...

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Bibliographic Details
Published in:Future generation computer systems 2004-10, Vol.20 (7), p.1185-1195
Main Authors: Li, T.H., Ni, J.R., Ju, W.X.
Format: Article
Language:English
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Summary:Land-use structure information is of significance in evaluation of soil loss owing to the contributions of various land-use patterns with different relative importance to soil and water conservation. In previous studies, a land-use structure characteristic index ( SI), defined as the sum of products between each weighted land-use type and the percentage of the impacted area in the whole test region, was proposed to reflect the resulting impacts of human factors and serve as an indirect measure of soil loss variation. In this paper, the SI was modified with consideration of spatial distribution of land-use in terms of the minimal distance between a specific land patch and a river, either the main stem or one of the primary tributaries. A topographic factor was also introduced to correct the SI. Soil loss was evaluated with support of GIS through a case study at Zhifanggou, a small catchment in the Yanhe watershed in the middle part of the Loess plateau. Comparison was made between the soil losses before and after the adjustment of land-use types since 1987 according to the governmental ordinance aiming at ecological rehabilitation. It was found that the land-use adjustment in the last 12 years has been in a right direction toward minimizing soil loss, but the difference of the actual SI in 1999 and the predicted SI corresponding to the potential optimal land-use structure implies that more efforts should be made in land-use conversion in the coming years.
ISSN:0167-739X
1872-7115
DOI:10.1016/j.future.2003.11.008