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首页> 外文期刊>Geocarto international >Risk assessment of soil erosion in semi-arid mountainous watershed in Saudi Arabia by RUSLE model coupled with remote sensing and GIS
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Risk assessment of soil erosion in semi-arid mountainous watershed in Saudi Arabia by RUSLE model coupled with remote sensing and GIS

机译:基于RUSLE模型和GIS的沙特半干旱山地流域水土流失风险评价。

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摘要

Soil erosion is the most important factor in land degradation and influences desertification in semi-arid areas. A comprehensive methodology that integrates revised universal soil loss equation (RUSLE) model and GIS was adopted to determine the soil erosion risk (SER) in semi-arid Aseer region, Saudi Arabia. Geoenvironmental factors viz. rainfall (R), soil erodibility (K), slope (LS), cover management and practice factors were computed to determine their effects on average annual soil loss. The high potential soil erosion, resulting from high denuded slope, devoid of vegetation cover and high intensity rainfall, is located towards the north western part of the study area. The analysis is investigated that the SER over the vegetation cover including dense vegetation, sparse vegetation and bushes increases with the higher altitude and higher slope angle. The erosion maps generated with RUSLE integrated with GIS can serve as effective inputs in deriving strategies for land planning/management in the environmentally sensitive mountainous areas.
机译:水土流失是造成土地退化的最重要因素,并且会影响半干旱地区的荒漠化。采用综合修正的通用土壤流失方程(RUSLE)模型和GIS的综合方法来确定沙特阿拉伯半干旱地区Aseer地区的土壤侵蚀风险(SER)。地球环境因素,即。计算降雨(R),土壤易蚀性(K),坡度(LS),覆盖管理和实践因素,以确定它们对年均土壤流失的影响。高坡度裸露,没有植被覆盖和高强度降雨造成的潜在土壤侵蚀位于研究区域的西北部。分析表明,高海拔,高坡角的植被覆盖度(包括茂密植被,稀疏植被和灌木丛)的SER增加。由RUSLE与GIS集成生成的侵蚀图可作为有效输入,用于制定环境敏感山区的土地规划/管理策略。

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