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Design of Stilling Basin Linings with Sealed and Unsealed Joints

机译:密封和不密封接头的消声盆衬里设计

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One of the main causes of lining damage in stilling basins and at the toe of chute spillways is the global instantaneous uplift forces due to the difference in pressure acting on the upper and the lower surface of protection slabs or rock elements. Spillway stilling basin linings can be built according to two different techniques: using sealed joints or unsealed joints. In the case of sealed joints, the pressure underneath the slab is constant and the uplift force results from the pressure fluctuations acting on the slab. In the case of unsealed joints, the pressure propagation at the lower surface of the slab, being transferred through the joints, should also be considered. The aim of the paper is to study, define, and compare the design criteria in these two cases. In the present study, the pressure field on the slab is evaluated according to a recent method based on the Taylor hypothesis, whereas the pressure propagation under the slab is computed by a new 3D model based on unsteady flow analysis of seepage through porous media. By this approach, it is possible to consider the effect of finite thickness foundation layers, typical in the case of weirs for run-of-river power plants, earth dams, and rock-fill dams. Furthermore, to complete the presented design criteria, the dynamic behavior of anchored slabs is experimentally investigated with reference to the sealed joint case due to a lack of studies in the literature. (C) 2016 American Society of Civil Engineers.
机译:消融池和斜槽溢洪道趾部衬砌损坏的主要原因之一是由于作用在保护板或岩石元件的上,下表面上的压力差而引起的整体瞬时上升力。可以根据两种不同的技术来建造溢洪道消音盆衬里:使用密封接头或未密封接头。在密封接缝的情况下,平板下方的压力是恒定的,而向上的作用力则来自作用在平板上的压力波动。对于未密封的接头,还应考虑通过接头传递在平板下表面的压力传播。本文的目的是研究,定义和比较这两种情况下的设计标准。在本研究中,根据基于泰勒假设的最新方法评估了板坯上的压力场,而根据基于多孔介质渗流的非定常流动分析的新型3D模型,计算了板坯下的压力传播。通过这种方法,有可能考虑有限厚度地基层的影响,这在河道发电厂,土坝和堆石坝的堰的情况下是典型的。此外,为了完成提出的设计标准,由于缺乏文献研究,参考密封接头的情况,对锚板的动力特性进行了实验研究。 (C)2016年美国土木工程师学会。

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