首页> 外文期刊>Journal of Hydrodynamics >A HYBRID MODEL FOR SIMULATING VELOCITY FIELD OF A RIVER WITH COMPLEX GEOMETRY PLUNGED BY MULTIPLE JETS
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A HYBRID MODEL FOR SIMULATING VELOCITY FIELD OF A RIVER WITH COMPLEX GEOMETRY PLUNGED BY MULTIPLE JETS

机译:复杂几何多次突入河流速度场的混合模型。

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摘要

A hybrid model that combines both physical and numerical models was employed to simulate the velocity field in a river area in complex geometry with multiple plunging jets. The simulation was based on experiments concerning energy dissipation and scour prevention at the Xiluodu Hydropower Station on the Yangtze River. The calculated results indicate that the complex geometry of the river area has a significant influence on the velocity field, especially on the circulation flow pattern at upstream and downstream of the plunging area and on the asymmetric characteristics of the spiral flow near both banks. The scour characteristics of the downstream river bed caused by the multiple jets were also predicted and analyzed according to the characteristics of the calculated velocity field. The good agreement between the simulated and experimental results indicates that the hybrid model can be used to effectively solve complicated 3-D problems with complex geometric and inlet conditions. Such problems may not easily be solved by using either a physical or a numerical model alone, and therefore the method presented in this article is considered to be a practical and effective way of dealing with this kind of problems.
机译:结合了物理模型和数值模型的混合模型被用来模拟具有多个喷射流的复杂几何形状的河流区域的速度场。该模拟基于长江流域溪洛渡水电站的消能及防冲刷试验。计算结果表明,河流区域的复杂几何形状对速度场具有重要影响,特别是对切入区上游和下游的环流模式以及两岸附近螺旋流的非对称特性都有显着影响。并根据计算得到的速度场特征,对多次喷流引起的下游河床冲刷特性进行了预测和分析。仿真结果与实验结果之间的良好一致性表明,该混合模型可用于有效解决复杂几何和入口条件下的复杂3D问题。单独使用物理模型或数值模型可能无法轻松解决这些问题,因此,本文中介绍的方法被认为是解决此类问题的一种实用且有效的方法。

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