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3-D Numerical Simulation of Flow Structures in a Sharp Bend of the Lower Yangtze River

机译:下长江急剧弯曲流动结构的3-D数值模拟

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The three-dimensional (3-D) flow structures in the Taiziji Waterway of the Lower Yangtze River were simulated by a 3-D numerical model, where the river plan form is a sharp bend and island-braided. The verification results of the 3-D model indicated that the simulated results agree with the measured data. The patterns of 3-D flow structures in this sharp bend with different discharge were analyzed based on the calculated results. The simulated results demostrated that strong 3-D features of flow structures can be found in the sharp bend of Taiziji Waterway, the bottom velocity vectors point to the convex bank while the surface vectors point to the concave bank. The velocity distribution alone the lateral direction in the sharp bend depends mostly on the flow discharge. The discharge ratio of the left branch increases as flow discharge increases.
机译:下长江泰寨水路中的三维(3-D)流动结构由三维数值模型进行模拟,其中河流计划形式是锋利的弯曲和岛状编织。 3-D模型的验证结果表明模拟结果与测量数据一致。基于计算结果分析了具有不同放电的急剧弯曲中的3-D流动结构的图案。模拟结果发出的是,在太子水路的急剧弯曲中可以找到强大的三维特征,底部速度向量指向凸台,而表面向量点指向凹槽。单独的速度分布在尖锐弯曲中的横向上主要取决于流量放电。随着流量排出的增加,左分支的排出比率增加。

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