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Application of fuzzy logic approach for landslide susceptibility mapping in Garuwa sub-basin, East Nepal

机译:模糊逻辑方法在尼泊尔东部加鲁瓦子盆地滑坡敏感性图中的应用

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摘要

Landslide is one of the major natural disasters which cause extensive loss of life and property. During the last three decades, different researchers have developed different methodologies to prepare landslide susceptibility mapping and hazard assessment in the world. The main goal of this paper is to apply a fuzzy logic approach to landslide susceptibility mapping in the Garuwa sub-basin area, East Nepal. Eight different causative factors are considered: slope angle, slope aspect, slope shape, relative relief, distance from drainage, land use, geology, and distance from active faults. Likelihood ratios are obtained for each class of causative factors by comparison with past landslide occurrences. Then, the likelihood ratios are normalized between zero and one to obtain fuzzy membership values. Next, different fuzzy operators are applied to generate landslide susceptibility maps. Comparison with the landslide inventory map reveals that the fuzzy gamma (λ) operator with a λ-value of 0.70 yields the best prediction accuracy which is then used to produce the final landslide susceptibility zonation map.
机译:滑坡是造成重大生命和财产损失的重大自然灾害之一。在过去的三十年中,世界上不同的研究人员开发了不同的方法来准备滑坡敏感性图和灾害评估。本文的主要目标是将模糊逻辑方法应用于尼泊尔东部加鲁瓦次流域地区的滑坡敏感性地图。考虑了八个不同的成因:斜坡角度,斜坡纵横比,斜坡形状,相对起伏,距排水的距离,土地利用,地质以及距活动断层的距离。通过与过去的滑坡发生情况进行比较,可以得出每种致病因素的似然比。然后,似然比在零和一之间归一化以获得模糊隶属度值。接下来,应用不同的模糊算子来生成滑坡敏感性图。与滑坡清单图的比较表明,λ值为0.70的模糊伽玛(λ)运算符可产生最佳的预测精度,然后将其用于生成最终的滑坡敏感性分区图。

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