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The formation of the Wulipo landslide and the resulting debris flow in Dujiangyan City, China

机译:都江堰市五里坡滑坡的形成及泥石流

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摘要

The Wulipo landslide,triggered by heavy rainfall on July 10,2013,transformed into debris flow,resulted in the destruction of 12 houses,44 deaths,and 117 missing.Our systematic investigation has led to the following results and to a new understanding about the formation and evolution process of this hazard.The fundamental factors of the formation of the landslide are a high-steep free surface at the front of the slide mass and the sandstone-mudstone mixed stratum structure of the slope.The inducing factor of the landslide is hydrostatic and hydrodynamic pressure change caused by heavy continuous rainfall.The geological mechanical model of the landslide can be summarized as "instability-translational slide tension fracture collapse" and the formation mechanism as "translational landslide induced by heavy rainfall".The total volume of the landslide is 124.6×104 m3,and 16.3% of the sliding mass was dropped down from the cliff and transformed into debris flow during the sliding process,which enlarged 46.7% of the original sliding deposit area.The final accumulation area is found to be 9.2×104 m2.The hazard is a typical example of a disaster chain involving landslide and its induced debris flow.The concealment and disaster chain effect is the main reason for the heavy damage.In future risk assessment,it is suggested to enhance the research on potential landslide identification for weakly intercalated slopes.By considering the influence of the behaviors of landslide-induced debris flow,the disaster area could be determined more reasonably.
机译:在2013年7月10日的暴雨引发的Wulipo滑坡转变为泥石流,导致12栋房屋被毁,44例死亡和117例失踪。滑坡形成的基本因素是滑坡体前部的高陡自由面和斜坡的砂岩-泥岩混合地层结构。滑坡的地质力学模型可以归纳为“失稳-平移滑移张裂裂缝塌陷”,滑坡的形成机理可以归纳为“强降雨引起的平移滑坡”。滑坡为124.6×104 m3,滑动过程中有16.3%的滑石从悬崖上掉下来,转变为泥石流。 h扩大了原始滑动沉积面积的46.7%,最终累积面积为9.2×104 m2。该灾害是包括滑坡及其诱发的泥石流的灾害链的典型例子。在今后的风险评估中,建议加强对弱夹层边坡潜在滑坡识别的研究。通过考虑滑坡引起的泥石流行为的影响,可以更合理地确定灾区。 。

著录项

  • 来源
    《山地科学学报(英文版)》 |2017年第6期|1100-1112|共13页
  • 作者

    CHEN Xing-zhang; CUI Yi-fei;

  • 作者单位

    School of Environment and Resource, Southwest University of Science and Technology, Mianyang 621010, China;

    Department of Civil and Environmental Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China;

  • 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
  • 中图分类
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