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Design and performance of a novel multi-function debris flow mitigation system in Wenjia Gully, Sichuan

机译:四川文家沟的新型多功能碎片流动缓解系统的设计与性能

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AbstractThe post-earthquake debris flows in the Wenjia Gully led to the exposure of the shortcomings in the design of the original conventional debris flow mitigation system. A predicament for the Wenjia mitigation system is a large amount of loose material (est. 50?×?106?m3) that has been deposited in the gully by the co-seismic landslide, providing abundant source material for debris flows under saturation. A novel design solution for the replacement mitigation system was proposed and constructed, and has exhibited excellent performance and resilience in subsequent debris flows. The design was governed by the three-phase philosophy of controlling water, sediment, and erosion. An Early Warning System (EWS) for debris flow that uses real-time field data was developed; it issues alerts based on the probabilistic and empirical correlations between rainfall and debris flows. This two-fold solution reduces energy of the debris flow by combining different mitigation measures while minimizing the impact through event forecasting and rapid public information sharing. Declines in the number and size of debris flows in the gully, with increased corresponding rainfall thresholds and mean rainfall intensity-duration (I-D) thresholds, indicate the high efficacy of the new mitigation system and a lowered debris flow susceptibility. This paper reports the design of the mitigation system and analyzes the characteristics of rainfall and debris flow events that occurred before and after implementation of the system; it evaluates the effectiveness of one of the most advanced debris flow mitigation systems in China.]]>
机译: 6 ??3 3 ),其被遗弃在GULLY中共同地震滑坡,为饱和度提供丰富的碎片流动源材料。提出和构建了更换缓解系统的新型设计解决方案,在随后的碎片流动中表现出优异的性能和韧性。该设计受到控制水,沉积物和侵蚀的三相哲学的管辖。开发了一种用于使用实时现场数据的碎片流的预警系统(EWS);它根据降雨和碎片流动之间的概率和经验相关性问题提出警报。这种双折的解决方案通过结合不同的缓解措施来减少碎片流量的能量,同时通过事件预测和快速公共信息共享最小化影响。在沟壑中碎片的数量和大小下降,随着相应的降雨阈值和平均降雨强度持续时间(<重点型=“斜体”> I - <重点类型=“斜体”> D )阈值,表明新减缓系统的高效率和降低的碎片流动敏感性。本文报告了减缓系统的设计,并分析了系统前后发生的降雨和碎片流动事件的特点;它评估了中国中最先进的碎片流动缓解系统之一的有效性。 ]]>

著录项

  • 来源
    《Landslides》 |2017年第6期|共16页
  • 作者单位

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

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

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

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

    School of Civil and Environmental Engineering Georgia Institute of Technology;

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

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 崩塌;
  • 关键词

    Wenjia mitigation system; Debris flow; Early Warning System; Wenchuan Earthquake; Co-seismic landslide;

    机译:文家缓解系统;碎片流动;预警系统;汶川地震;共同地震山体滑坡;

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