利用RUSLE和EPM经验模型量化马拉喀什高地图集Rheraya盆地的水侵蚀

Q4 Engineering Disaster Advances Pub Date : 2023-04-15 DOI:10.25303/1605da019028
Salma Kabili, A. Algouti, Abdellah Algouti, Akram El Ghouat
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引用次数: 0

摘要

水土流失造成的水土流失是一个主要问题,它会产生环境和其他一些问题。这项工作的目的是量化和评估Rheraya盆地区域的侵蚀风险3,估计土壤流失率,并确定流域水侵蚀演变的主要标准。研究表明,河流穿过易受侵蚀的表面、斜坡以及人为活动的共同存在加剧了这一现象。采用RUSLE4和EPM5经验模型,结合GIS和遥感6来表征该地区的这一比率。RUSLE模型根据降雨的侵蚀性、土壤可蚀性、植被覆盖、斜坡的长度和倾斜度以及流域的抗侵蚀实践,评估了坡面侵蚀产生的土壤流失率。“EPM”模型估计了水侵蚀造成的侵蚀率和土壤损失。它是基于地图绘制和六个参数的组合,即:平均温度、年平均降水量、坡度、侵蚀状态、土地利用和土壤抗侵蚀性。结果表明,Rusle模型的侵蚀速率在0至188 t/公顷/年之间变化,年均土壤损失为46、85 t/ha/年。EPM模型的应用结果表明,年均土壤流失量为103t/ha/y,数值范围在0至200t/ha/y。这些结果表明,上游地区的侵蚀风险非常高,因此它们肯定有助于管理和减少高阿特拉斯山脉的土壤侵蚀。
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Quantification of water erosion using empirical models RUSLE and EPM in the Rheraya basin in the High Atlas of Marrakech
Soil loss caused by water erosion constitutes a major issue that generate environmental and other several problems. The objective of this work is to quantify and assess the risk of erosion in the region of the Rheraya basin3 and to estimate the rate of soil loss and to characterize the main criteria involved in the evolution of water erosion in the basin. The study revealed that the combined presence of streams, crossing easily eroded surfaces, slopes, as well as anthropogenic action, aggravated the phenomenon. The empirical RUSLE4 and EPM5 models combined with GIS and remote sensing6 were adopted to characterize this rate in the region. The RUSLE model evaluated the rate of soil loss produced by sheet erosion, based on the aggressiveness of the rain, soil erodibility, the vegetation cover, the length and the inclination of the slope as well as the anti-erosion practices in the basin. The "EPM" model estimated the rate of erosion and soil losses caused by water erosion in general. It is based on the mapping and the combination of six parameters which are: average temperature, average annual precipitation, slope, erosion state, land use and soil resistance to erosion. Results showed that the erosion rate using Rusle model varies between 0 and 188 t/ha/year with an average annual soil loss of 46, 85 t/ha/year. The results of the application of the EPM model showed that the average annual of soil loss is 103 t/ha/y with values extending between 0 and 200 t/ha/y. These results exposed that the areas upstream represent a very high risk of erosion, so they can surely aid to manage and reduce soil erosion in the High Atlas mountains.
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来源期刊
Disaster Advances
Disaster Advances 地学-地球科学综合
CiteScore
0.70
自引率
0.00%
发文量
57
审稿时长
3.5 months
期刊介绍: Information not localized
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