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首页> 外文期刊>Environmental Geology >Medium scale earthflow susceptibility modelling by remote sensing and geographical information systems based multivariate statistics approach: an example from Northeastern Turkey
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Medium scale earthflow susceptibility modelling by remote sensing and geographical information systems based multivariate statistics approach: an example from Northeastern Turkey

机译:基于Multi相当统计方法的遥感和地理信息系统中等规模地地流敏感性模型:来自火鸡东北部的示例

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摘要

The aim of the present study was to produce an earthflow susceptibility map for the city center and environs of the province of Rize located at the Northeastern part of Turkey. The study area is the rainiest region of Turkey, and due to the triggering effect of precipitation earthflows are frequently observed in and around the study area. Besides this point, weathered rock units and steep topography accompany with precipitation for the occurrence of earthflow cases. Considering this point, an earthflow susceptibility mapping was inferred to be a necessity for the area. Parameters, such as lithology, slope gradient, slope aspect, topographical wetness index (TWI), stream power index (SPI), slope curvature, and sediment capacity index (LS) were considered to be earthflow conditioning parameters. A multi-temporal earthflow inventory map for a period of 4 years (2011-2015) was initially generated by way of remote sensing approach and field surveys. Earthflow susceptibility map was produced using the logistic regression method after which the produced susceptibility map was validated. The mapped earthflows were separated into two groups prior to modelling and validation. The first group was for training and the second group was for validation steps. The accuracy of the model was measured by fitting them to a validation set of mapped earthflows. Area under curvature (AUC) approach was applied for validation purposes. The prediction capability of the earthflow susceptibility map produced can be regarded as acceptable in accordance with the AUC values of 0.62 for the logistic regression model. Based on these results, the obtained earthflow susceptibility map can be used to mitigate hazards related to landslides and to aid in land-use planning for the Rize city center.
机译:本研究的目的是为位于土耳其东北部的Rize市中心和环境的城市中心和周围的地球流敏感性图。研究区是土耳其的最衰落地区,由于沉淀地块的触发效果经常在研究区域和周围观察到。除此之外,风化的岩石单元和陡峭的地形伴随着发生土地流量的降水。考虑到这一点,推断了地球流敏感性映射,以成为该地区的必要性。参数,例如岩性,坡度梯度,斜坡方面,地形湿度指数(TWI),流功率指数(SPI),斜率曲率和泥沙容量指数(LS)被认为是地路调节参数。最初是通过遥感方法和现场调查的方式生成4年(2011-2015)的多时间地球流量库存地图。使用逻辑回归方法产生地路流敏感性图,之后验证了所产生的易感图。在建模和验证之前,映射的土地流分为两组。第一组是培训,第二组是验证步骤。通过将它们拟合到验证的映射物流集来测量模型的准确性。曲率下的区域(AUC)方法用于验证目的。由于逻辑回归模型的AUC值,所产生的地球流敏感图的预测能力可以被视为0.62的AUC值。基于这些结果,所获得的地震敏感性图可用于减轻与滑坡相关的危害,并帮助Rize市中心的土地使用规划。

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