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Air Injection as a Scour Countermeasure at Bridge Piers.

机译:空气注入作为桥墩的冲刷对策。

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摘要

Local scour is a major cause of concern for the stability of bridge piers and the safety of the public using the bridges. Structural countermeasures and flow-altering devices have been developed to deal with local scour. Many armoring structural countermeasures are very effective and efficient in clear water conditions but are susceptible to moving bed forms and leaching. The flow-altering devices are effective in both clear water conditions and moving bed forms, but are prone to clogging, less efficient in changing flow direction, etc. This study aims to reduce the local scour by injecting air in order to reduce the effect of the scour-inducing downward roller flow pattern by harnessing the buoyancy of the injected air bubbles.;A clear-water scour experimental study is conducted in a rectangular channel with a pier embedded in a sand bed. Air is injected through a horizontal diffuser pipe wound around the upstream half of the cylindrical bridge pier. Measurements were taken for maximum local scour depth, water surface profile, rate of scour, centerline scour elevation and channel bed profile at the equilibrium condition. The ratio of velocity of air to the velocity of water (Va /Vw) was chosen as the non-dimensional variable for this study and was considered the most suitable representation and for ease of scalability. The air injection reduced the local scour at bridge piers in equilibrium conditions by nearly 35%. This scour reduction is caused by a change in flow patterns around the bridge piers with the injection of air bubbles. A dye test was performed for the base case (without air injection) and the optimal case (Va/Vw = 57.1) to observe the change in flow behavior around the pier.
机译:局部冲刷是引起桥墩稳定性和使用桥梁的公众安全的主要原因。已经开发出结构性对策和改变流量的装置来应对局部冲刷。许多装甲结构对策在清水条件下都是非常有效的方法,但易于移动床层和浸出。流量改变装置在清水条件和移动床形式下均有效,但容易堵塞,改变流动方向效率较低等。本研究旨在通过注入空气来减少局部冲刷,以减少水的影响。通过利用注入的气泡的浮力来诱导向下冲刷的水流模式。在矩形通道中进行了清水冲刷实验研究,该矩形通道的墩嵌入了砂床。空气通过缠绕在圆柱形桥墩上游一半的水平扩散管注入。在平衡条件下对最大局部冲刷深度,水面轮廓,冲刷速率,中线冲刷高度和通道床轮廓进行了测量。空气速度与水速度的比值(Va / Vw)被选为该研究的无量纲变量,被认为是最合适的表示形式,并且易于扩展。在平衡条件下,空气注入使桥墩处的局部冲刷减少了近35%。这种冲刷的减少是由于气泡的注入导致桥墩周围流动方式的变化而引起的。对基本情况(无空气注入)和最佳情况(Va / Vw = 57.1)进行了染色测试,以观察墩台周围流动特性的变化。

著录项

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Civil engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 55 p.
  • 总页数 55
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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