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首页> 外文期刊>Journal of Computing in Civil Engineering >CFD Simulations and Analyses for Bridge-Scour Development Using a Dynamic-Mesh Updating Technique
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CFD Simulations and Analyses for Bridge-Scour Development Using a Dynamic-Mesh Updating Technique

机译:使用动态网格更新技术进行桥式开发的CFD模拟和分析

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摘要

A computational fluid dynamics (CFD)-based simulation methodology using a dynamic mesh updating technique is proposed in this study. This method can numerically describe the complicated 3D scour behavior around the piers of bridges. By redeveloping a commercial CFD computer program, the transient shear stress in a k-eturbulence model is first calculated, where the shear stress is regarded as a key parameter to judge the sediment incipient motion in scour process. Then, the dynamic mesh updating technique is implemented to assure a practical and accurate scour simulation by individually updating the finite element (FE) model nodes of the riverbed in each time step. A good calculation convergence is further ensured by controlling the stability during the equation solving process, in simple terms by avoiding the denominator (or generalized denominator) being close to zero. Second, based on the comparisons between the numerical results and experimental measurements, it is confirmed that the proposed numerical modeling method successfully predicts the flow field and scour (riverbed) profile. Finally, through a parametric case study the influence of the pier types on the scour behaviors is investigated by the proposed simulation. It is also proven that the proposed simulation method is a good and reliable tool to predict and discuss the spatial development of bridge scour process. (C) 2014 American Society of Civil Engineers.
机译:本研究提出了一种使用动态网格更新技术的基于计算流体动力学(CFD)的仿真方法。该方法可以用数字描述桥墩周围的复杂3D冲刷行为。通过重新开发商用CFD计算机程序,首先计算k湍流模型中的瞬时剪切应力,其中剪切应力被视为判断冲刷过程中沉积物初期运动的关键参数。然后,实施动态网格更新技术以通过在每个时间步中分别更新河床的有限元(FE)模型节点来确保实用而准确的冲刷模拟。通过简单地避免分母(或广义分母)接近零,可以简单地控制方程求解过程中的稳定性,从而进一步确保了良好的计算收敛性。其次,基于数值结果与实验测量值的比较,可以确认所提出的数值建模方法可以成功预测流场和冲刷(波动)轮廓。最后,通过参数化案例研究,通过提出的模拟研究了码头类型对冲刷行为的影响。事实证明,所提出的仿真方法是预测和讨论桥梁冲刷过程空间发展的良好而可靠的工具。 (C)2014年美国土木工程师学会。

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