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Experiments on the characteristics of breach variations due to natural dam overtopping

机译:天然大坝拓展引起的突破变化特征的实验

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摘要

Natural dams are a common geological disaster that can threaten the safety of people and buildings for several hundreds of kilometres downstream. However, the failure characteristics of natural dams are still unclear, especially the variation characteristics of breaches. In this paper, 20 groups of flume experiments are conducted. Based on the experimental results, the longitudinal and lateral variations of breaches during overtopping are studied. In addition, the relationship between the width and depth of breaches is quantitatively analysed. The results are as follows: during the process of a natural dam overtopping failure, the relationship between the breach depth and time is controlled by the slope of the flume. It is demonstrated that there is an “S” shape when the slope is small and a straight line when the slope is large. In terms of the rate of lateral expansion of the breach, it is demonstrated that the rate of lateral expansion of the breach is smaller in the earlier stage and later stage and is larger in the middle stage. The relationship between width and time is S-shaped. The slope at the bottom of the breach fluctuates during the entire process. The main reason is that the dam break is accompanied by backward erosion, but the slope remains below the underwater angle of repose of the material. Based on the experimental data, the quantitative relationship between the width and depth of breach is investigated. On the basis of the quantitative relationships, a mathematical model of dam breaks is established. The rationality of the model is verified by comparison with actual cases, and the relationship between the width and depth of breaches is proved to be reasonable.
机译:天然大坝是一个常见的地质灾害,可以威胁人们和建筑物的安全,在下游的数百公里。然而,天然坝的故障特征仍然不清楚,尤其是违规的变异特性。在本文中,进行了20组水管实验。基于实验结果,研究了泄露过程中爆发的纵向和横向变化。另外,定量分析突破宽度和深度之间的关系。结果如下:在天然大坝的过程中,漏洞深度与时间之间的关系由水槽的斜率控制。结果证明,当斜面很小时,当斜面小并且直线时,存在“s”形状。就突发的横向膨胀速率而言,证明突发的横向膨胀率在早期的阶段和后期阶段较小,中间阶段较大。宽度和时间之间的关系是S形的。在整个过程中突破底部的斜率波动。主要原因是坝断裂伴随着落后的侵蚀,但斜坡仍然低于材料的水下分角。基于实验数据,研究了突破宽度和深度之间的定量关系。在定量关系的基础上,建立了大坝休息的数学模型。通过与实际情况进行比较验证了模型的合理性,并且证明了泄露宽度和深度之间的关系是合理的。

著录项

  • 来源
    《Environmental earth sciences》 |2021年第10期|373.1-373.15|共15页
  • 作者单位

    School of Civil Engineering Sichuan Agricultural University Dujiangyan 611830 China;

    School of Civil Engineering Sichuan Agricultural University Dujiangyan 611830 China;

    Key Laboratory of Mountain Hazards and Surface Process Institute of Mountain Hazards and Environment CAS Chengdu 610041 China;

    Key Laboratory of Mountain Hazards and Surface Process Institute of Mountain Hazards and Environment CAS Chengdu 610041 China;

    32017 troop Lhasa 850000 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Natural dam; Breach variations; Breach width; Breach depth; Breaching model;

    机译:天然大坝;突破性变化;突破宽度;漏洞深度;违反模型;

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