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首页> 外文期刊>Journal of hydraulic research >Three-dimensional modelling of flow in sharp open-channel bends with vanes
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Three-dimensional modelling of flow in sharp open-channel bends with vanes

机译:带有叶片的尖锐明渠弯道中流动的三维建模

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Flow around a sharp open-channel bend is highly three-dimensional (3D) due to the combined effects of secondary flow, a large free surface variation and flow separation along the inner wall. Continuous vanes often used in closed curved conduits to generate a more uniform downstream flow were tested in the open channel using a 3D finite-volume model with a Reynolds stress turbulence model and the volume of fluid method for free surface prediction. The velocity field, turbulent kinetic energy and the extent of the flow separation zone were successfully validated against laboratory measurements for the no-vane case. The 3D simulations for one-vane and three-vane configurations reveal that vertical vanes are effective to reduce the secondary flow intensity and flow separation along the inner wall. The energy loss for bends with vanes is further slightly reduced compared to the no-vane case. The three-vane configuration is particularly efficient at creating uniform downstream flow.
机译:由于二次流,较大的自由表面变化和沿内壁的流分离的综合作用,围绕尖锐的明渠弯头的流动具有很高的三维度(3D)。经常在封闭的弯曲导管中使用以产生更均匀的下游流量的连续叶片在明渠中使用3D有限体积模型和雷诺应力湍流模型以及用于自由表面预测的流体体积方法进行了测试。相对于无叶片情况下的实验室测量,已经成功地验证了速度场,湍动能和流动分离区的范围。单叶片和三叶片配置的3D模拟显示,垂直叶片可有效降低内壁的二次流动强度和流动分离。与无叶片情况相比,带叶片弯头的能量损失进一步降低了。三叶片构造在产生均匀的下游流方面特别有效。

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