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Uplift Pressures below Spillway Chute Slabs at Unvented Open Offset Joints

机译:在未通风的偏心接头处的溢洪道斜槽平板下方的上升压力

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摘要

The catastrophic failure of the spillway chute at Oroville Dam in February 2017 raised concerns throughout the water resources industry regarding design, construction, and maintenance practices for concrete spillway chutes, especially joints and cracks that could allow penetration of high-pressure water into a chute foundation. The independent forensic team investigation found that hydraulic jacking was the most likely cause of the initial chute slab failure, highlighting a need for better analysis of the hydraulic jacking potential of existing spillways and more resilient designs for spillways that operate under high-velocity flow conditions. This paper reviews the Oroville Dam event and findings and previous laboratory testing performed to evaluate uplift pressures and flow transmitted through spillway joints. A reanalysis of previous studies was used to develop relations between chute velocity, joint geometry, and uplift pressure transmitted into a joint. Uplift pressure head in these relations is expressed in a dimensionless manner, either as a percentage of the velocity head in the boundary layer at midheight of the offset into the flow, or as a percentage of the channel-average velocity head. The first approach is potentially more useful for prototype applications, but the second method provides the best fit to the available experimental data. Additional research is still needed to quantify rates of flow through open joints, confirm relations between uplift pressure and boundary layer velocities, and evaluate the effects of aerated flow.
机译:2017年2月,Oroville大坝的溢洪道滑槽发生灾难性故障,引发了整个水资源行业对混凝土溢洪道滑槽(特别是可能使高压水渗透到滑槽基础中的接缝和裂缝)的设计,建造和维护实践的关注。独立的法医小组调查发现,液压顶管是造成斜槽板初始故障的最可能原因,这突出表明,需要对现有溢洪道的液压顶升潜力进行更好的分析,并为在高速流动条件下运行的溢洪道提供更具弹性的设计。本文回顾了Oroville大坝的事件和发现以及先前进行的实验室测试,以评估通过溢洪道缝传递的升压和流量。对以前的研究进行了重新分析,以开发溜槽速度,关节几何形状和传递到关节的升压之间的关系。在这些关系中,升压压头以无量纲的方式表示,或者是边界层中流速偏移的中间高度处边界层中速度头的百分比,或者是通道平均速度头中的百分比。第一种方法对于原型应用程序可能更有用,但是第二种方法提供了对可用实验数据的最佳拟合。仍需要进一步的研究来量化流经开放式节理的流量,确认隆起压力与边界层速度之间的关系,以及评估充气流量的影响。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2019年第11期|04019039.1-04019039.11|共11页
  • 作者单位

    Bur Reclamat Hydraul Invest & Lab Serv Denver CO 80225 USA;

    Henry T Falvey & Associates 11624 Blackfoot Rd Conifer CO 80433 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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