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Modelling turbulent flow in two-stage meandering channels

机译:模拟两级曲流通道中的湍流

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摘要

A three-dimensional (3-D) modelling study for calculating free-surface turbulent flow in two-stage meandering channels is presented. The numerical model solves the 3-D Reynolds-averaged continuity and Navier-Stokes equations with the k-ε turbulence model for steady-state flow. The flow equations are solved numerically with a general-purpose finite-volume code. The results are first evaluated against the experimental data obtained from the UK Flood Channel Facility. The predicted distributions of the free surface elevation, streamwise velocity, secondary vectors, turbulent kineti energy and bed shear stress are used to investigate the accuracy of the model prediction at both the apex and other sections along the channel. The predictive ability of the 3-D model is also assessed against results from a two-dimensional (2-D) model with regard to the distributions of free surface elevation, depth-averaged velocity and bed shear stress. The results show that the 3-D model predicts the flow fields reasonably well and estimates bed shear stress values more accurately than the 2-D model. The feasibility of applying the 3-D model to a practical field example is demonstrated for the case of an inbank flow on the River Blackwater. Here, the calculations are carried out for flow through a 130 m stretch of the River Blackwater for which detailed flow measurements were collected. The results show the ability of the 3-D model to capture the flow field with reasonable accuracy when applied to the complex boundary conditions which are needed to describe a semi-natural river. This illustrates the potential for using the 3-D model for predicting flow processes in natural rivers with complex geometry.
机译:提出了用于计算两级曲流通道中自由表面湍流的三维(3-D)建模研究。数值模型用k-ε湍流模型求解稳态流动的3-D雷诺平均连续性和Navier-Stokes方程。用通用的有限体积代码对流动方程进行数值求解。首先根据从英国洪水通道设施获得的实验数据对结果进行评估。使用自由表面标高,水流速度,次要矢量,湍动动能和床剪应力的预测分布来研究模型预测在通道顶点和其他部分的准确性。还针对自由表面标高,深度平均速度和床切应力的分布,根据二维(2-D)模型的结果评估了3-D模型的预测能力。结果表明,与2-D模型相比,3-D模型可以很好地预测流场,并且可以更准确地估算床层剪应力值。对于在黑水河上的河岸流量情况,证明了将3-D模型应用于实际现场示例的可行性。在此,对流经130 m的黑水河的流量进行了计算,并收集了详细的流量测量结果。结果表明,将3D模型应用于描述半天然河流所需的复杂边界条件时,能够以合理的精度捕获流场。这说明了使用3-D模型预测具有复杂几何形状的天然河流中水流过程的潜力。

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