首页> 外文期刊>Journal of Hydraulic Engineering >Flow Velocity and Pier Scour Prediction in a Compound Channel: Big Sioux River Bridge at Flandreau, South Dakota
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Flow Velocity and Pier Scour Prediction in a Compound Channel: Big Sioux River Bridge at Flandreau, South Dakota

机译:复合河道中的流速和码头冲刷预测:南达科他州弗兰德劳的大苏河大桥

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The two-dimensional (2D) depth-averaged river model Finite-Element Surface-Water Modeling System (FESWMS) was used to predict flow distribution at the bend of a compound channel. The site studied was the Highway 13 bridge over the Big Sioux River in Flandreau, South Dakota. The Flandreau site has complex channel and floodplain geometry that produces unique flow conditions at the bridge crossing. The 2D model was calibrated using flow measurements obtained during two floods in 1993. The calibrated model was used to examine the hydraulic and geomorphic factors that affect the main channel and floodplain flows and the flow interactions between the two portions. A one-dimensional (ID) flow model of the bridge site was also created in Hydrologic Engineering Centers River Analysis System (HEC-RAS) for comparison. Soil samples were collected from the bridge site and tested in an erosion function apparatus (EFA) to determine the critical shear stress and erosion rate constant. The results of EFA testing and 2D flow modeling were used as inputs to the Scour Rate in Cohesive Soils (SRICOS) method to predict local scour at the northern and southernmost piers. The sensitivity of predicted scour depth to the hydraulic and soil parameters was examined. The predicted scour depth was very sensitive to the approach-flow velocity and critical shear stress. Overall, this study has provided a better understanding of 2D flow effects in compound channels and an overall assessment of the SRICOS method for prediction of bridge pier scour.
机译:使用二维(2D)深度平均河模型有限元地表水建模系统(FESWMS)来预测复合通道弯道处的流量分布。研究的地点是南达科他州弗兰德劳的大苏河上的13号高速公路桥梁。法兰德罗(Flandreau)站点具有复杂的河道和洪泛区几何形状,从而在桥梁穿越处产生独特的流动条件。使用1993年两次洪灾期间获得的流量测量结果对2D模型进行了校准。该校准模型用于检查影响主要河道和洪泛区流量以及两部分之间的流量相互作用的水力和地貌因素。在水文工程中心河流分析系统(HEC-RAS)中,还创建了桥梁站点的一维(ID)流模型以进行比较。从桥梁现场收集土壤样品,并在侵蚀功能设备(EFA)中进行测试,以确定临界剪切应力和侵蚀速率常数。 EFA测试和2D流动建模的结果用作粘性土壤冲刷率(SRICOS)方法的输入,以预测最北部和最南端码头的局部冲刷。检查了预测冲刷深度对水力和土壤参数的敏感性。预测的冲刷深度对进水速度和临界剪应力非常敏感。总的来说,这项研究提供了对复合通道中二维流动影响的更好理解,并全面评估了SRICOS方法对桥墩冲刷的预测。

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