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The Development of a 1-D Integrated Hydro-Mechanical Model Based on Flume Tests to Unravel Different Hydrological Triggering Processes of Debris Flows

机译:基于Flume测试的1-D集成水电模型的开发解开不同水文触发过程的碎片流动

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摘要

Many studies which try to analyze conditions for debris flow development ignore the type of initiation. Therefore, this paper deals with the following questions: What type of hydro-mechanical triggering mechanisms for debris flows can we distinguish in upstream channels of debris flow prone gullies? Which are the main parameters controlling the type and temporal sequence of these triggering processes, and what is their influence on the meteorological thresholds for debris flow initiation? A series of laboratory experiments were carried out in a flume 8 m long and with a width of 0.3 m to detect the conditions for different types of triggering mechanisms. The flume experiments show a sequence of hydrological processes triggering debris flows, namely erosion and transport by intensive overland flow and by infiltrating water causing failure of channel bed material. On the basis of these experiments, an integrated hydro-mechanical model was developed, which describes Hortonian and saturation overland flow, maximum sediment transport, through flow and failure of bed material. The model was calibrated and validated using process indicator values measured during the experiments in the flume. Virtual model simulations carried out in a schematic hypothetical source area of a catchment show that slope angle and hydraulic conductivity of the bed material determine the type and sequence of these triggering processes. It was also clearly demonstrated that the type of hydrological triggering process and the influencing geometrical and hydro-mechanical parameters may have a great influence on rainfall intensity-duration threshold curves for the start of debris flows.
机译:许多研究试图分析碎片流动发展的条件忽略了启动类型。因此,本文涉及以下问题:碎片流动的水力机械触发机制的哪种类型的水力机械触发机制可以区分碎片流动易一沟渠的上游渠道?这是控制这些触发过程的类型和时间序列的主要参数,以及它们对碎片流动启动的气象阈值的影响是什么?一系列实验室实验在MLUME 8米长,宽度为0.3μm以检测不同类型的触发机构的条件。水槽实验显示了一系列触发碎片流动的水文过程,即通过密集的陆地流动以及通过渗透导致渠道床材料的渗透而渗透和运输。在这些实验的基础上,开发了一种集成的水力机械模型,该模型描述了霍顿和饱和度覆风,最大沉积物运输,通过床材料的流动和失效。使用在水槽实验期间测量的过程指示值校准模型并验证。在集水区的示意图假设源区域中进行的虚拟模型模拟,示出了床材料的斜角和液压导电性决定了这些触发过程的类型和序列。还清楚地证明了水文触发过程的类型和影响几何和水力 - 力学参数可能对降雨强度持续时间阈值曲线产生很大影响,以便开始碎片流动。

著录项

  • 作者

    Theo van Asch; Bin Yu; Wei Hu;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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