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Multidisciplinary investigations in evaluating landslide susceptibility- An example in the Serchio River valley (Italy)

机译:评价滑坡敏感性的多学科研究-以塞尔基奥河谷(意大利)为例

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The proposed experimental study is aimed at contributing to the landslide susceptibility evaluation using a multidisciplinary approach: geological, geomorphological and geo-engineering survey, together with multivariate statistical analysis and GIS technique. It is included in a wider research project, aimed at defining the landslide hazard in the area of the map no. 250 "Castelnuovo di Garfagnana" (1:50000 scale). This study is based on the realization of a landslides inventory map and statistical data analysis using probabilistic methods.rnThe methodology applied in ranking slope instability proceeded step by step. At first, geomorphologic investigation was performed in order to realize a landslide inventory map. A GIS database was created to collect the characteristics related to landslides geometry, type of movement and state of activity. Geo-engineering survey and characterization with in situ and laboratory tests allowed assessing Rock Mass Classification and geotechnical properties of soils (texture and consistency). The statistical approach for evaluating the landslide susceptibility is based on the assumption that the landslide probability for the currently landslides-free areas could be evaluated studying the conditions which led to past and present instability. A set of environmental factors, thought to be related to landslides, were analysed and their spatial distribution organized in different layers. Then, GIS-supported spatial analysis, conditional and multivariate analysis, allowed to calculate the connections between instability factors and landslide distribution. This step evolved towards two distinct statistical methods, both indirect and quantitative, leading to a classification of the land surface in some different susceptibility domains. Conditional analysis was applied to a particular type of terrain unit named Unique Condition Unit (UCU) that is a unique combination of the instability factors. The computer-aided evaluation of the landslide index within each UCU represents the probability of landslide occurrence, according to Bayes statistical concept. Multivariate analysis was applied to the same set of instability factors, but to a different type of terrain unit, the grid cell. The results showed a quantitative response, more reliable about the effectiveness of each instability factors, with the possibility of verifying their statistical significance.
机译:拟议的实验研究旨在通过多学科方法(地质,地貌和地球工程调查),多元统计分析和GIS技术,为滑坡敏感性评估做出贡献。它包含在一个更广泛的研究项目中,旨在确定No.1地图区域的滑坡灾害。 250“ Castelnuovo di Garfagnana”(比例为1:50000)。这项研究是基于滑坡清单图的实现和使用概率方法进行统计数据分析的基础。逐步对坡度不稳定性进行排序的方法。首先,为了完成滑坡清单图,进行了地貌调查。建立了一个GIS数据库,以收集与滑坡几何形状,运动类型和活动状态有关的特征。地球工程调查和原位测试和实验室测试可评估岩体分类和土壤的岩土特性(质地和稠度)。评估滑坡敏感性的统计方法是基于这样的假设,即可以通过研究导致过去和现在不稳定的条件来评估当前无滑坡地区的滑坡概率。分析了与滑坡有关的一组环境因素,并在不同层次上组织了它们的空间分布。然后,由GIS支持的空间分析,条件和多元分析允许计算不稳定因素与滑坡分布之间的联系。此步骤演变为两种不同的统计方法,包括间接方法和定量方法,从而导致在一些不同的磁化率域中对土地表面进行分类。条件分析被应用于一种称为唯一条件单元(UCU)的特殊类型的地形单元,它是不稳定因素的唯一组合。根据贝叶斯统计概念,对每个UCU中滑坡指数的计算机辅助评估代表了滑坡发生的可能性。多变量分析应用于同一组不稳定因素,但应用于不同类型的地形单元,即网格单元。结果显示出定量反应,关于每个不稳定因素的有效性更可靠,​​并有可能证实其统计意义。

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