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Planning Landslide Countermeasure Works through Long Term Monitoring and Grey Box Modelling

机译:通过长期监测和灰箱建模来规划滑坡对策工程

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The design of countermeasure works to mitigate landslide risk needs to deal with the multiple unknowns that are linked with soil properties, distribution and rheology. Most of the time, the degree of definition of all these elements is low. Through landslide monitoring, it is possible to acquire signals from the landslide that carry synthetic information about its dynamic. Thus, if it is possible to define a model that is able to link the landslide displacements with the triggering factors and to predict them consistently, that model may be used to evaluate the effect of a countermeasure work directly, bypassing the geomechanical uncertainty. In this paper, an example application of this approach is described. The displacements of a landslide located in North East Italy are connected with the water discharge of the small stream the crosses the landslide body. A countermeasure work that intercepts the discharge of the torrent is expected to reduce the landslide displacements of approximately 70%, with lower costs of construction and smaller impacts on the environment and landscape with respect of other types of structural mitigation works such as slope reprofiling and large retaining walls.
机译:应对措施的设计旨在减轻滑坡风险,以应对与土壤特性,分布和流变学有关的多种未知因素。大多数时候,所有这些元素的定义度都很低。通过滑坡监测,可以从滑坡获取承载有关其动态的综合信息的信号。因此,如果有可能定义一个模型,该模型能够将滑坡位移与触发因素联系起来并一致地进行预测,则该模型可以用于绕过地质力学不确定性直接评估对策工作的效果。在本文中,描述了这种方法的示例应用。位于意大利东北部的滑坡的位移与穿过滑坡体的小溪流的排水有关。拦截山洪排放的对策工作预计将减少大约70%的滑坡位移,相对于其他类型的结构减缓工程(例如坡度重塑和大型),其建设成本较低且对环境和景观的影响较小挡土墙。

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