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首页> 外文期刊>Hydrology and Earth System Sciences Discussions >A model of hydrological and mechanical feedbacks of preferential fissure flow in a slow-moving landslide
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A model of hydrological and mechanical feedbacks of preferential fissure flow in a slow-moving landslide

机译:缓慢移动滑坡中优先裂隙水流的水文和机械反馈模型

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摘要

The importance of hydrological processes for landslide activity is generally accepted. However, the relationship between precipitation, hydrological responses and movement is not straightforward. Groundwater recharge is mostly controlled by the hydrological material properties and the structure (e.g., layering, preferential flow paths such as fissures) of the unsaturated zone. In slow-moving landslides, differential displacements caused by the bedrock structure complicate the hydrological regime due to continuous opening and closing of the fissures, creating temporary preferential flow paths systems for infiltration and groundwater drainage. The consecutive opening and closing of fissure aperture control the formation of a critical pore water pressure by creating dynamic preferential flow paths for infiltration and groundwater drainage. This interaction may explain the seasonal nature of the slow-moving landslide activity, including the often observed shifts and delays in hydrological responses when compared to timing, intensity and duration of precipitation. brbr The main objective of this study is to model the influence of fissures on the hydrological dynamics of slow-moving landslide and the dynamic feedbacks between fissures, hydrology and slope stability. For this we adapt the spatially distributed hydrological and slope stability model (STARWARS) to account for geotechnical and hydrological feedbacks, linking between hydrological response of the landside and the dynamics of the fissure network and applied the model to the hydrologically controlled Super-Sauze landslide (South French Alps).
机译:人们普遍接受水文过程对滑坡活动的重要性。但是,降水,水文响应和运动之间的关系并不直接。地下水的补给主要由水文材料特性和非饱和区的结构(例如分层,优先流动路径,例如裂缝)控制。在缓慢移动的滑坡中,由于裂缝的连续打开和关闭,基岩结构引起的差异位移使水文状况变得复杂,从而为渗透和地下水排泄创造了临时的优先流动路径系统。裂缝开口的连续打开和关闭通过创建用于渗透和地下水排泄的动态优先流动路径来控制临界孔隙水压力的形成。这种相互作用可能解释了滑坡活动缓慢的季节性质,包括与降水时间,强度和持续时间相比经常观察到的水文响应的变化和延迟。 这项研究的主要目的是模拟裂缝对缓慢移动的滑坡的水文动力学以及裂缝,水文和边坡稳定性之间的动态反馈的影响。为此,我们采用空间分布的水文和边坡稳定性模型(STARWARS)来考虑岩土和水文反馈,将土地的水文响应与裂隙网络的动力学联系起来,并将该模型应用于水文控制的Super-Sauze滑坡(法国南部阿尔卑斯山)。

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