基于模糊逻辑和层次分析法的土壤侵蚀潜在易感区优选——埃塞俄比亚青尼罗河上游流域

Berhanu G. Sinshaw , Abreham M. Belete , Agumase K. Tefera , Abebe Birara Dessie , Belay B. Bizuneh , Habtamu T. Alem , Simir B. Atanaw , Daniel G. Eshete , Tsegaye G. Wubetu , Haimanot B. Atinkut , Mamaru A. Moges
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引用次数: 13

摘要

土壤侵蚀对土壤流失、农业用地退化和作物减产构成全球性威胁。本文介绍了可持续土地规划的建立,以及土壤侵蚀速率的评价方法。基于系统复杂分析,对Ribb流域土壤侵蚀进行优先排序,以完善水土保持规划。考虑了影响土壤侵蚀的几个地理环境因素(土地利用、土壤、坡度、SPI、TWI、河流邻近度、曲率、坡向)来评估潜在的土壤侵蚀风险。信息层次集中于专家经验,动态决策过程建立在网络框架中。采用R Studio模糊层次分析法软件包计算各层权重。根据各层的权重和区域调查中与侵蚀有关的事件的手段,将各层结合在一个平台上,形成了土壤侵蚀敏感性图。因此,该土壤侵蚀图的总体结果分别为极高、高、中等、低和极低侵蚀脆弱性,面积覆盖率分别为13.4%、27.93%、32.74%、17.42%和8.5%。敏感性图显示,模糊和层次分析法分别占土壤侵蚀高敏感区的11.05%和15.75%。研究表明,为了适应气候变化,控制罗纹水库和塔纳湖的沉积问题,应优先考虑罗纹流域的高、特高侵蚀易发区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prioritization of potential soil erosion susceptibility region using fuzzy logic and analytical hierarchy process, upper Blue Nile Basin, Ethiopia

Soil erosion poses a global threat to soil loss, agricultural land deterioration, and crop yield decreases. This paper accounts for the establishment of sustainable land planning, and methods for evaluating soil erosion rates. The study was conducted based on the system complex analysis to prioritize soil erosion in Ribb watershed to improve soil and water conservation planning. Several geographical-environmental factors affecting soil erosion (land use, soil, slope, SPI, TWI, river Proximity, curvature, aspect) considered to assess potential soil erosion risk. The information levels were focused on expert experience, and the dynamic decision-making process built in a network framework. The weights for each layer were computed by R Studio fuzzy AHP package. The map of soil erosion susceptibility was developed by combining layers in a platform based on their weights and means of erosion-related incidents in regional surveys. Hence, the soil erosion map's overall results showed very high, high, moderate, low, and very low vulnerability to erosion with areal coverage of 13.4 %, 27.93 %, 32.74 %, 17.42 %, and 8.5 %, respectively. The susceptibility map demonstrates that high soil erosion sensitive areas with Fuzzy and AHP respectively cover 11.05 % and 15.75 %. The study indicates that priority should be given to high and very high erosion-prone areas in Rib watershed to adapt to climate change and control sedimentation problems in the Rib reservoir and Lake Tana.

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