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Effects of rainfall spatial variability and intermittency on shallow landslide triggering patterns at a catchment scale

机译:降雨空间变异性和间歇性对集水区浅滑坡触发模式的影响

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The occurrence of shallow landslides is often associated with intense and prolonged rainfall events, where infiltrating water reduces soil strength and may lead to abrupt mass release. Despite general understanding of the role of rainfall water in slope stability, the prediction of rainfall-induced landslides remains a challenge due to natural heterogeneity that affect hydrologic loading patterns and the largely unobservable internal progressive failures. An often overlooked and potentially important factor is the role of rainfall variability in space and time on landslide triggering that is often obscured by coarse information (e.g., hourly radar data at spatial resolution of a few kilometers). To quantify potential effects of rainfall variability on failure dynamics, spatial patterns, landslide numbers and volumes, we employed a physically based Catchment-scale Hydromechanical Landslide Triggering (CHLT) model for a study area where a summer storm in 2002 triggered 51 shallow landslides. In numerical experiments based on the CHLT model, we applied the measured rainfall amount of 53 mm in different artificial spatiotemporal rainfall patterns, resulting in between 30 and 100 landslides and total released soil volumes between 3000 and 60,000 m(3) for the various scenarios. Results indicate that low intensity rainfall below soil's infiltration capacity resulted in the largest mechanical perturbation. This study illustrates how small-scale rainfall variability that is often overlooked by present operational rainfall data may play a key role in shaping landslide patterns.
机译:浅层滑坡的发生往往与强烈和长期的降雨事件相关,其中渗透水降低了土壤强度,可能导致突然释放。尽管对坡度稳定性的降雨水的作用一致,但降雨诱导的滑坡预测仍然是由于影响水文载荷模式的天然异质性和基本不可观察的内部渐进失败的挑战。经常被忽视和潜在的重要因素是降雨变量在空间和时间上的作用在阳台触发上,通常通过粗略信息掩盖(例如,在几公里的空间分辨率下的每小时雷达数据)。为了量化降雨变异对失效动态的潜在影响,空间模式,滑坡数量和卷,我们采用了一个物理上基于集水机械滑坡触发(CHLT)模型,用于2002年夏季风暴触发51浅山体滑坡。在基于CHLT模型的数值实验中,我们将测量的降雨量为53毫米以不同的人工空雨污染图案,导致30至100次滑坡和总释放的土壤体积为3000至60,000米(3)的各种情况。结果表明,低强度降雨量低于土壤渗透能力,导致最大的机械扰动。本研究说明了现有操作降雨数据通常忽视的小规模降雨变化可能在整形滑坡模式中发挥关键作用。

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