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Numerical Modeling Of Rainfall Thresholds For Shallow Landslidingin The Seattle, Washington, Area

机译:华盛顿州西雅图市浅层滑坡降雨阈值的数值模拟

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The temporal forecasting of landslide hazard has typically relied on empirical relations between rainfall characteristics and landslide occurrence to identify conditions that may cause shallow landslides. Here, we describe an alternate, deterministic approach to define rainfall thresholds for landslide occurrence in the Seattle, Washington, area. This approach combines an infinite slope-stability model with a variably saturated flow model to determine the rainfall intensity and duration that leads to shallow failure of hillside colluvium. We examine the influence of variation in particle-size distribution on the unsaturated hydraulic properties of the colluvium by performing capillary-rise tests on glacial outwash sand and three experimental soils with increasing amounts of finegrained material. Observations of pore-water response to rainfall collected as part of a program to monitor the near-surface hydrology of steep coastal bluffs along Puget Sound were used to test the numerical model results and in an inverse modeling procedure to determine the in situ hydraulic properties. Modeling results are given in terms of a destabilizing rainfall intensity and duration, and comparisons with empirical observations of landslide occurrence and triggering rainfall indicate that the modeling approach may be useful for forecasting landslide occurrence.
机译:滑坡灾害的时间预测通常依靠降雨特征和滑坡发生之间的经验关系来确定可能引起浅层滑坡的条件。在这里,我们描述了另一种确定性方法,用于定义华盛顿州西雅图地区滑坡发生的降雨阈值。该方法将无限的边坡稳定性模型与可变的饱和流模型相结合,以确定导致山坡崩塌层浅破坏的降雨强度和持续时间。我们通过对冰川冲积砂和三种实验性土壤中细颗粒物质含量增加的样品进行毛细管上升试验,研究了粒径分布变化对胶合层非饱和水力特性的影响。作为监测普吉特湾沿岸陡峭沿海悬崖的近地表水文学程序的一部分,对孔隙水对降雨的响应进行了观测,以测试数值模型结果并在逆向建模程序中确定原位水力特性。给出的建模结果是根据不稳定的降雨强度和持续时间给出的,并且与对滑坡发生和触发降雨的经验观察的比较表明,该建模方法可能对预测滑坡的发生有用。

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