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Development of CFD Simulation for 3-D Flooding Flow and Scouring Around a Bridge Structure

机译:桥梁结构3-D洪水流动与冲刷CFD仿真开发

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Analysis of drag and lift forces and evaluation of scour around bridge structures are necessary to assess risk of bridge failure during storms and floods. Simulation of scour-hole formation under the bridge deck and around the bridge piers, due to sediment entrainment and transport caused by flooding flow conditions, is of significant interest to computational fluid dynamics (CFD) and hydraulics researchers. This study is focused on simulation of 3-D open channel turbulent flow over an inundated bridge deck to obtain the final shape and size of the scour-hole. This 3-D study extends the previous 2-D simulation scouring methodology. Solutions for flow field and turbulence, using an effective bed roughness value, are based on the Reynolds Averaged Navier-Stokes (RANS) equations, and a k-e turbulence closure model using a commercial CFD code. An iterative computational methodology is developed to predict the equilibrium 3-D scour-hole using a single phase model moving boundary formulation, based on an empirical correlation for critical shear stress to determine the condition for sediment removal. The computational model has demonstrated capability to reach a converged solution for the equilibrium scour-hole shape and size that agree reasonably well with experiments. The method provides a basis for implementing enhanced particle entrainment physics and other scour model improvements in well benchmarked commercial CFD software.
机译:为了评估暴风雨和洪水期间桥梁故障的风险,必须分析起重力和评估桥梁结构周围的冲刷。计算流体力学(CFD)和水力学研究人员非常关注模拟桥面下和桥墩周围冲刷孔的形成,这是由于洪水流动条件引起的泥沙夹带和运输所致。这项研究的重点是模拟淹没桥面上的3-D明渠湍流,以获得冲孔的最终形状和尺寸。此3-D研究扩展了先前的2-D模拟精练方法。使用有效床粗糙度值的流场和湍流解决方案基于雷诺平均Navier-Stokes(RANS)方程,以及使用商业CFD代码的k-e湍流闭合模型。基于临界剪切应力的经验相关性以确定沉积物去除的条件,开发了一种迭代计算方法来使用单相模型移动边界公式来预测平衡3-D冲孔。该计算模型证明了能够获得平衡的冲孔形状和大小的收敛解的能力,该值与实验相当吻合。该方法为在性能良好的基准CFD软件中实施增强的粒子夹带物理和其他冲刷模型改进提供了基础。

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