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Laboratory Experiments on Breaching Characteristics of Natural Dams on Sloping Beds

机译:倾斜床上天然坝突破特征的实验室实验

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摘要

Natural dams formed by landslides may produce disastrous floods after dam outburst. However, studies on the breaching characteristics of natural dams on sloping beds systematically are still at an early stage, and especially the relationship between breach width and depth is still unclear. In this paper, results of a series of laboratory tests that assessed seven different flume bed slope angles are presented. The results show that 3 stages of breaching process of natural dams on different bed slopes were observed. According to the results, headward erosion was the main force for enlargement of breach when bed slope was relatively small. With the increasing of bed slope, the effect of tractive erosion on longitudinal development of breach wass enhanced. The discharge hydrographs were unimodal for all the bed slopes. The peak discharge increased first and then decreased with the increasing of bed slope. The elapsed time from the start of breach formation to the moment of peak discharge decreased with the increasing of bed slope. The difference between different bed slopes was larger when the bed slope was small or large, and the relationship between duration and bed slope had the same characteristics. With the increasing of bed slope, the ratio of breach width to breach depth rose to 1 and then decreased with the increasing of bed slope angle. A result of the present work is a function of the relationship between the breach width and depth for which it is possible to calculate them. This function is based on a shape parameter that linearly decreases with bed slope. The relationship between shape parameter and bed slope was developed to calculate the shape parameter with an additional relationship between shape parameter and mean diameter of particles. Combined with the experimental data and filed data of Tangjiashan natural dam, the shape parameter was calculated, and the function was validated.
机译:在大坝爆发后,山体滑坡形成的天然大坝可能会产生灾难性的洪水。然而,关于倾斜床上系统地突破特性的研究仍处于早期阶段,特别是突发宽度和深度之间的关系仍然不明朗。在本文中,提出了一系列评估七种不同水下床斜角的一系列实验室测试的结果。结果表明,观察到不同床斜坡上的自然坝突破过程的3个阶段。根据结果​​,当床斜率相对较小时,向前侵蚀是扩大突发的主力。随着床位坡度的增加,牵引侵蚀对突破性WASS纵向开发的影响增强。排出的水文照片对于所有床倾斜都是单峰。峰值放电首先增加,然后随着床斜率的增加而降低。随着床斜率的增加,从突发形成开始到峰值放电时刻的经过时间减少。当床斜率小或大时,不同床斜坡之间的差异较大,并且持续时间和床斜率之间的关系具有相同的特性。随着床斜率的增加,突破宽度与突破深度的比率升至1,然后随着床倾斜角的增加而降低。当前工作的结果是突破宽度和深度之间的关系的函数,可以计算它们。该功能基于具有床斜率线性减少的形状参数。开发了形状参数和床斜率之间的关系以计算形状参数,其形状参数与粒子的平均直径之间的附加关系。结合实验数据和唐家山天然大坝的提交数据,计算形状参数,验证功能。

著录项

  • 来源
    《Advances in civil engineering 》 |2019年第14期| 5064093.1-5064093.14| 共14页
  • 作者

    Jiang Xiangang;

  • 作者单位

    Sichuan Agr Univ Sch Civil Engn Dujiangyan 611830 Peoples R China|Sichuan Agr Univ Sichuan Higher Educ Engn Res Ctr Disaster Prevent Dujiangyan 611830 Peoples R China;

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  • 正文语种 eng
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