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Improving Flows in Misaligned Culverts

机译:在未对准的涵洞中改善流动

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This study investigated different approaches to optimize flows in misaligned culverts. Structures aligned with the natural stream are always preferred, as misalignments cause a change of direction at the culvert inlet associated with lower performance and sedimentation and erosion problems. This optimal positioning can cause high financial costs and a flow optimization minimizing the associated problems could be a viable alternative. In this study, we used computational fluid dynamics analysis to evaluate the flow in 44 different scenarios with misalignment angles ranging from 0 ° to 90 ° . It was found that smooth transitions towards the narrowest point in the stream (culvert) were possible for any degree of misalignment resulting in improved, uniform velocity distributions and less turbulence. An experimental setup was able to confirm the possible flow improvements. The proposed approach of flow redirection can lower construction costs and gives planners and designers more flexibility as tailored reinforcement and redesign of the stream embankment can be used as an alternative to costly creek alignments.
机译:本研究研究了不同的方法,以优化未对准的涵洞流动。与天然流对准的结构总是优选的,因为未对准导致涵洞入口的方向变化,与较低的性能和沉降和腐蚀问题相关。这种最佳定位可能导致高金融成本,并且最小化相关问题的流量优化可能是可行的替代方案。在这项研究中,我们使用计算流体动力学分析来评估44种不同场景的流量,其中未对准角度范围为0°至90°。结果发现,对于任何变化程度的未对准,可以平滑地朝着溪流中的最窄点转变(涵洞),从而产生改善,均匀的速度分布和较小的湍流。实验设置能够确认可能的流动改进。所提出的流量重定向方法可以降低建筑成本,并为规划者提供更大的灵活性,因为定制加固和重新设计流堤,可以用作昂贵的小溪对齐的替代方案。

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