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Experimental study of viscous debris flow characteristics in drainage channel with oblique symmetrical sills

机译:倾斜对称门槛排水通道粘性碎片流动特性的实验研究

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摘要

AbstractIn this study, experiments were performed in a 6-m-long flume to determine the characteristics of viscous debris flows in a new type of drainage channel with oblique symmetrical sills. The debris flow velocity was measured and subsequently used to characterise the viscous debris flow. The influences of the channel slope, transverse length of sills, and row spacing of sills on the debris flow velocity and the velocity reduction ratioPwere investigated. The experimental results indicated that the viscous debris flow velocity increased as the channel slope increased from 0.10 to 0.15. However, the velocity decreased as the ratio of the transverse length of sills to the row spacing of sills increased from 0.13 to 0.53. Different combinations of the channel slopes, transverse lengths of sills, and row spacing of sills reduced the velocity by 14.2%–51.1% compared to the velocity in a smooth channel. The effects of the channel slopes, transverse lengths of sills, and row spacing of sills onPcould be described using a power-law equation. Most of the errors inPprediction ranged from ?25.0% to 25.0%. A comparison ofPin drainage channels with different deceleration measures indicated thatPincreased with an increase in the length of a channel with deceleration measures. These experimental results serve as a useful reference for the design of drainage channels with oblique symmetrical sills.Highlights?Viscous debris flows in a drainage channel with oblique sills were characterized.?The channel slope and transverse length of sills affected the debris flow velocity.?A power-law equation was established to predict the flow velocity reduction ratio.?This ratio increased as the channel length (with deceleration measures) increased.]]>
机译:<![cdata [ 抽象 在本研究中,在6米长的水下进行实验,以确定粘性碎片流动的特性在具有斜对称窗台的新型排水通道中。测量碎片流速并随后用于表征粘性碎片流动。研究了沟道坡度,横向长度的岩石坡度和速度减少速度和速度减少速度 p 的影响。实验结果表明,随着通道斜率增加到0.10至0.15,粘性碎片流速增加。然而,随着机架的行间距的横向长度的比率增加到0.13至0.53,速度降低。与平滑通道中的速度相比,沟道斜率的不同组合,门槛的横向长度和门槛的行间距降低14.2%-51.1%。可以使用幂律方程描述沟道斜率,横向的横向长度的横向长度和斜岩的行间距和斜体>斜体>。 p 预测的大部分错误从?25.0%到25.0%。 p 具有不同减速措施的排水通道的比较表明 p 随着减速措施的通道长度的增加而增加。这些实验结果用作具有斜对称窗台的排水通道的有用参考。 突出显示 < CE:PARA ID =“P0005”视图=“全部”>粘性碎片在带斜体窗台的排水通道中的流动。 窗台的频道斜率和横向长度影响了碎片流速。 电力 - 法律方程成立以预测流速减少率。 此比率随着信道长度(减速措施)增加而增加。 ]]>

著录项

  • 来源
    《Engineering Geology》 |2018年第2018期|共8页
  • 作者单位

    Key Laboratory of Mountain Hazards and Earth Surface Processes Institute of Mountain Hazards and the Environment Chinese Academy of Sciences;

    Key Laboratory of Mountain Hazards and Earth Surface Processes Institute of Mountain Hazards and the Environment Chinese Academy of Sciences;

    School of Civil Engineering and Architecture Southwest Petroleum University;

    Key Laboratory of Mountain Hazards and Earth Surface Processes Institute of Mountain Hazards and the Environment Chinese Academy of Sciences;

    Key Laboratory of Mountain Hazards and Earth Surface Processes Institute of Mountain Hazards and the Environment Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文地质学与工程地质学;
  • 关键词

    Debris flow; Drainage channel; Oblique symmetrical sill; Mitigation structure;

    机译:碎片流动;排水通道;斜对称窗台;缓解结构;

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