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Effect of rainfall on a colluvial landslide in a debris flow valley

机译:降雨对泥石流谷中崩积滑坡的影响

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摘要

A colluvial landslide in a debris flow valley is a typical phenomena and is easily influenced by rainfall.The direct destructiveness of this kind of landslide is small,however,if failure occurs the resulting blocking of the channel may lead to a series of magnified secondary hazards.For this reason it is important to investigate the potential response of this type of landslide to rainfall.In the present paper,the Goulingping landslide,one of the colluvial landslides in the Goulingping valley in the middle of the Bailong River catchment in Gansu Province,China,was chosen for the study.Electrical Resistivity Tomography (ERT),Terrestrial Laser Scanning (TLS),together with traditional monitoring methods,were used to monitor changes in water content and the deformation of the landslide caused by rainfall.ERT was used to detect changes in soil water content induced by rainfall.The most significant findings were as follows:(1) the water content in the centralupper part (o~41 m) of the landslide was greater than in the central-front part (41~84 m) and (2)there was a relatively high resistivity zone at depth within the sliding zone.The deformation characteristics at the surface of the landslide were monitored by TLS and the results revealed that rainstorms caused three types of deformation and failure:(1) gully erosion at the slope surface;(2)shallow sliding failure;(3) and slope foot erosion.Subsequent monitoring of continuous changes in pore-water pressure,soil pressure and displacement (using traditional methods) indicated that long duration light rainfall (average 2.22 mm/d) caused the entire landslide to enter a state of creeping deformation at the beginning of the rainy season.Shear-induced dilation occurred for the fast sliding (30.09 mm/d) during the critical failure sub-phase (EF).Pore-water pressure in the sliding zone was affected by rainfall.In addition,the sliding L1 parts of the landslide exerted a discontinuous pressure on the L2 part.Through the monitoring and analysis,we conclude that this kind of landslide may have large deformation at the beginning and the late of the rainy season.
机译:泥石流谷中的山崩滑坡是一种典型现象,容易受到降雨的影响。这种滑坡的直接破坏力很小,但是,如果发生破坏,造成的通道阻塞可能会导致一系列次生危害。因此,研究这种类型的滑坡对降雨的潜在响应非常重要。在本文中,沟陵坪滑坡是甘肃省白龙河流域中部沟陵坪流域的一种崩塌滑坡之一。选择了中国作为研究对象。电阻层析成像(ERT),地面激光扫描(TLS)与传统的监测方法一起,被用来监测水含量的变化和降雨引起的滑坡的变形。主要研究结果如下:(1)陆地中部上部(o〜41 m)的含水量de大于中部前部(41〜84 m),(2)在滑动带内的深度处有一个较高的电阻率带。通过TLS监测了滑坡表面的变形特征,结果揭示暴雨造成了三种类型的变形和破坏:(1)坡面的沟壑侵蚀;(2)浅层滑动破坏;(3)和坡脚侵蚀。随后监测孔隙水压力,土壤压力和土壤的连续变化。位移(使用传统方法)表明长时间的降雨(平均2.22 mm / d)导致整个滑坡在雨季开始时进入蠕变变形状态,而快速滑动(30.09 mm / d)期间,滑坡区的孔隙水压力受降雨的影响。此外,滑坡的L1滑动部分对L2部分施加了不连续的压力。 d分析表明,这种滑坡在雨季的开始和后期可能有较大的变形。

著录项

  • 来源
    《山地科学学报(英文版)》 |2017年第6期|1113-1123|共11页
  • 作者单位

    Key Laboratory of Western China's Environmental Systems(Ministry of Education), Lanzhou University, Lanzhou 730000, China;

    Key Laboratory of Western China's Environmental Systems(Ministry of Education), Lanzhou University, Lanzhou 730000, China;

    Key Laboratory of Western China's Environmental Systems(Ministry of Education), Lanzhou University, Lanzhou 730000, China;

    Key Laboratory of Western China's Environmental Systems(Ministry of Education), Lanzhou University, Lanzhou 730000, China;

    Key Laboratory of Western China's Environmental Systems(Ministry of Education), Lanzhou University, Lanzhou 730000, China;

    Key Laboratory of Western China's Environmental Systems(Ministry of Education), Lanzhou University, Lanzhou 730000, China;

    Geography Department, Royal Holloway, University of London, Surrey TW20 0EX, UK;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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