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Halt the Headcut-A Discussion on Earthen Spillway Erosion Cutoff Walls

机译:停止砍头-关于泥土溢洪道防渗墙的讨论

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Thousands of dams across the United States have been constructed with auxiliary earthen spillways, routing excess flood water around a dam site to prevent overtopping. In the last two decades, mathematical models and computer programs such as the Water Resources Site Analysis Program (SITES) program were developed, which can predict spillway erosion and the propagation of the erosion headcut through the spillway towards the reservoir. When the evaluation of spillway erosion for existing dams determines that the earthen spillway breaches during the required design storm, designers, owners, and operators can get stuck trying to find a solution to provide spillway capacity. Simple geometric solutions such as widening the spillway or raising/lengthening the control section will reduce unit discharge and shear stresses and solve the breach dilemma. However, modifying the earthen spillway to prevent a breach is often a significant alteration, and site constraints may not permit widening the spillway or raising the top of dam. Designers have solved this problem by utilizing structural concrete spillways that overtop the dam while abandoning the earthen spillway. But when significant hydraulic capacity is required and the dam site is not favorable to a large structural spillway, the earthen spillway may still be needed. Erosion cutoff walls can be added in the auxiliary' spillway to stop the progression of the headcut and prevent the earthen spillway breach. The SITES program allows users to add a cutoff wall to the erosion analysis thereby demonstrating that the spillway will not breach. The developers of the program added this as an option but provided no guidance about the design of the cutoff wall. This paper focuses on cutoff wall design options and discusses one project where a cutoff wall is being utilized to keep the earthen auxiliary spillway in service.
机译:全美国成千上万的水坝已经建有辅助的土方溢洪道,将过多的洪水引向水坝周围,以防止水位过高。在过去的二十年中,开发了数学模型和计算机程序,例如水资源现场分析程序(SITES)程序,该程序可以预测溢洪道的侵蚀以及侵蚀道岔通过溢洪道流向水库的传播。当对现有大坝的溢洪道侵蚀进行评估后,确定在所需的设计风暴期间土方溢洪道遭到破坏时,设计人员,所有者和运营商可能会陷入困境,试图寻找一种提供溢洪道能力的解决方案。简单的几何解决方案,例如加宽溢洪道或升高/延长控制段,将减少单位排放量和切应力,并解决突破难题。但是,修改土方溢洪道以防止发生破坏通常是一项重大更改,并且场地限制可能不允许加宽溢洪道或抬高大坝顶部。设计人员通过利用在大坝上方的结构性混凝土溢洪道而放弃了土方溢洪道来解决了这个问题。但是,当需要大量的水力并且坝址不利于大型结构溢洪道时,可能仍需要土质溢洪道。可以在辅助溢洪道中添加防渗墙,以阻止顶切的进行并防止土方溢洪道的破坏。 SITES程序允许用户在侵蚀分析中添加防渗墙,从而证明溢洪道不会破坏。该程序的开发人员将此添加为一个选项,但未提供有关隔断墙设计的指导。本文重点介绍了防渗墙的设计方案,并讨论了一个利用防渗墙使土方辅助溢洪道保持正常运转的项目。

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