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Application of the improved fuzzy analytic hierarchy process for landslide hazard assessment based on RS and GIS

机译:改进的模糊分析层次过程对基于RS和GIS的滑坡危险评估

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The landslide is a geological disaster that caused the second disruptions and losses next to the earthquake, and people around the world suffered a serious threat to their lives and property damage as a result of landslide disaster every year. So carrying on the study of the landslide hazard will create important theoretical meaning and practical value for proposing targeted prevention and treatment measures. Landslides occur more frequently in Guangxi where serious landslide disasters run riot because of its unique karst topography environment and abundant rainfall. The Wanxiu District of Wuzhou, Guangxi was selected as the study area, the landslide hazard zonation evaluation was studied on the basis of RS and GIS technology. The factors that influence landslide occurrence, such as elevation, slope inclination, slope aspect, curvature and distance to streams were derived from the DEM; landuse was extracted from the Google Earth image; lithology was digitalized from the geologic map; rainfall information was from the literature. An improved analytic hierarchy process was presented to determine the index weight in this study. The method weakens the uncertainty in the process of comparing the importance of each factor, it need not to do the consistency check, which can also reduce the iteration times enormously, and improve operating speed. Combined with fuzzy comprehensive evaluation method, the landslide hazard mapping of the study area was made according to the maximum membership degree principle. The resulting map can be used to provide some reference values for risk management, land-use planning and urbanization.
机译:Landslide是一种地质灾难,导致地震旁边的第二个中断和损失,而世界各地的人们每年山体滑坡灾难导致其生命和财产损失严重威胁。因此,继续研究滑坡危险将为提出有针对性的预防和治疗措施创造重要的理论意义和实用价值。广西的山体滑坡更频繁地发生,因为其独特的喀斯特地形环境和充足的降雨,严重滑坡灾害遭遇骚乱。广西梧州市万秀区被选为研究区,在RS和GIS技术的基础上研究了滑坡危害区划评估。影响山体滑坡发生的因素,例如海拔,坡度倾斜,斜面,曲率,曲率和与流距离的因素源自DEM; Landuse从Google地球图像中提取;岩性从地质地图数字化;降雨信息来自文献。提出了一种改进的分析层次过程以确定本研究中的指标权重。该方法削弱了比较每个因素的重要性的过程中的不确定性,它不需要进行一致性检查,这也可以极大地降低迭代时间,并提高运行速度。结合模糊综合评价方法,根据最大隶属度原则制定了研究区的滑坡危害映射。得到的地图可用于为风险管理,土地利用计划和城市化提供一些参考值。

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