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首页> 外文期刊>Engineering Geology >Analyzing successive landslide dam formation by different triggering mechanisms: The case of the Tangjiawan landslide, Sichuan, China
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Analyzing successive landslide dam formation by different triggering mechanisms: The case of the Tangjiawan landslide, Sichuan, China

机译:不同触发机制的连续滑坡坝体形成:唐家湾滑坡,四川,中国

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摘要

The catastrophic Tangjiawan landslide, triggered by the 2008 Wenchuan earthquake, blocked the Duba River, impounding one of the most dangerous coseismic barrier lakes in Beichuan, China. The lake was drained by an artificial spillway within one month after the earthquake to minimize the potential dam-breach flooding risk. However, on September 5, 2016, this landslide was reactivated and dammed the river again, creating a 20-m high dam at the same location and resulting in the formation of a barrier lake with a volume of 0.6 million m3. The day after the event we carried out a field investigation of the landslide and obtained a high-resolution image and DEM using UAV. The satellite images from 2005, 2008, 2010 and 2015 were also collected to analyze the evolution of the landslide. Together with multi-temporal DEMs, the geometry and volumes of the displaced mass and the landslide dams and barrier lakes were calculated using image interpretation and 3D spatial analysis with GIS. This landslide is of great scientific interest, as it presents a good example of multiple reactivation of a pre-historical giant landslide under different triggering conditions: a reactivation of an older landslide during the Wenchuan earthquake, and a second reactivation during a rainfall event several years later. Meanwhile from the hazard assessment and prevention perspective, it is also representative as it dammed the river twice in 2008 and 2016, posing threats to both upstream and downstream areas. We infer that the successive landslides in this region could be caused by the strong tectonic activities: including earthquakes and high average uplifting rate. The results of landslide volume analysis using multi-temporal DEMs, contribute to the landslide mechanism analysis, and suggest that the landslide volume estimation is effected by the landslide type, landslide rupture surface location, and resolution of DEM. We also compare the performance of different empirical models of landslide stability and dam-breach flood parameters and discuss their application during the quick assessment of the potential hazard of the landslide dams. Generally, the successive landslide dams at the Tangjiawan site are caused by the successive landslide reactivations on an anti-dip slope controlled by strong tectonic activity and river erosion, involve with a mass of loose materials of previous landslide deposition, and possess high flood risk to the downstream area. The experience gained in this work can be used to assist the hazard assessment and the planning of the emergency measures for similar landslide dams in the future.
机译:由2008年汶川地震引发的灾难性的唐家湾滑坡,阻止了迪巴河,扣押了中国北川最危险的电影屏障之一。湖泊在地震后一个月内由一个人为溢洪道排出,以尽量减少潜在的大坝冲突洪水风险。然而,2016年9月5日,这种滑坡再次重新激活并损坏了这条河,在同一位置创造了20米的高坝,并导致屏障湖的形成,体积为60万立方米。我们在活动后的一天,我们对滑坡进行了现场调查,并使用无人机获得了高分辨率图像和DEM。还收集了2005年,2008年,2010年和2015年的卫星图像,以分析滑坡的演变。使用与GIS的图像解释和3D空间分析计算出位移质量和滑坡坝和障碍湖的几何和障碍物的几何和体积。这种滑坡具有很大的科学兴趣,因为它在不同的触发条件下提出了一个历史前巨大滑坡的多重重新激活的一个很好的例子:在汶川地震期间重新激活旧滑坡,以及几年的降雨事件期间第二次重新激活之后。同时,从危险评估和预防的角度来看,它也是在2008年和2016年两次损坏河流的代表性,对上游和下游地区构成威胁。我们推断这一地区的连续滑坡可能是由强大的构造活动引起的:包括地震和高平均升高率。利用多时间DEM的滑坡体积分析结果有助于滑坡机制分析,并表明滑坡体积估计由滑坡式,滑坡破裂表面位置和DEM的分辨率实现。我们还比较了山体滑坡稳定性和大坝 - 泄露洪水参数的不同实证模型的性能,并在快速评估滑坡水坝的潜在危险时讨论其应用。一般来说,唐家国网站的连续滑坡大坝是由强大的构造活动和河流侵蚀控制的反倾倒坡度的连续滑坡再激活引起的,涉及以前的山体滑坡沉积的宽松材料,并具有高洪水风险下游区域。这项工作中获得的经验可用于协助危险评估和未来类似滑坡水坝的应急措施的规划。

著录项

  • 来源
    《Engineering Geology》 |2018年第2018期|共17页
  • 作者单位

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    Faculty of Geo-Information Science and Earth Observation (ITC) University of Twente;

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    The State Key Laboratory of Geohazard Prevention and Geoenvironment Protection (Chengdu University of Technology);

    Géorisques et Environnement Université de Liège;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文地质学与工程地质学;
  • 关键词

    Landslide dams; Wenchuan earthquake; Evolution; Hazard assessment; Emergency response;

    机译:滑坡水坝;汶川地震;进化;危害评估;应急响应;

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