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Insights from Depth-Averaged Numerical Simulation of Flow at Bridge Abutments in Compound Channels

机译:从复合通道中桥基处流动的深度平均数值模拟中获得的见解

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摘要

This study presents findings from two-dimensional depth-averaged flow models used to investigate distributions of flow velocity, unit discharge, and boundary shear stress associated with flow around spill-through bridge abutments, a very common form of bridge abutment. Design engineers often use such flow models to determine the distribution of flow through bridge waterways and to estimate peak magnitudes of flow velocity, unit discharge, or boundary shear stress for use in design estimation of abutment scour depth. The findings show how abutment flow fields, dominated by flow contraction around the abutment, adjust in response to variations of abutment length, floodplain width, and main-channel dimensions. The adjustments alter the magnitudes of amplification factors for depth-averaged velocity, unit discharge, and bed shear stress in the abutment vicinity; amplification factor for velocity is the ratio of maximum velocity to mean approach velocity (on the upstream floodplain or in the main channel). They also alter the distance from the abutment toe to the locations of peak values. This study covers a much broader range of abutment lengths, floodplain widths, and channel dimensions than heretofore reported in the literature.
机译:这项研究提出了二维深度平均流动模型的发现,该模型用于研究与溢流式桥台(一种常见的桥台形式)周围的水流相关的流速,单位流量和边界剪应力的分布。设计工程师经常使用这种流动模型来确定通过桥梁水道的流量分布,并估算流速峰值,单位流量或边界剪应力,以用于设计基台冲刷深度。研究结果表明,受基台周围流动收缩支配的基台流场如何响应于基台长度,洪泛区宽度和主河道尺寸的变化而进行调整。这些调整改变了基台附近深度平均速度,单位流量和床剪切应力的放大系数的大小;速度放大系数是最大速度与平均接近速度之比(在上游洪泛区或在主河道中)。它们还会改变从基台脚趾到峰值位置的距离。这项研究涵盖的基台长度,洪泛区宽度和河道尺寸比以前文献中报道的范围要广得多。

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