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Numerical study of flow pattern around lateral intake in a curved channel

机译:弯曲通道中横向摄入周围流动模式的数值研究

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This paper deals with numerical study of flow field in a channel bend in presence of a lateral intake using three-dimensional numerical model SSIIM2. The effects of bend on the structure of the flow around the intake are investigated and compared with the experimental data. The tests are carried out in a U-shaped channel bend with a lateral intake. The intake is located at the outer bank of an 180 bend at position 115 with 45 diversion angle and the experimental data can be used to calibrate and validate numerical models. The results show that both the centerregion and outer-bank cross-stream circulations are observed in the experiments while only the former is captured by the numerical model due to the limitations of the turbulence model. In the curved channel after the intake, both experimental and numerical results show another type of bi-cellular circulations in which clockwise center-region circulations and counterclockwise circulations near the inner bank and the free surface (inner-bank circulations) are captured. The study shows that the numerical model very satisfactorily predicts streamlines, velocity field and flow pattern in the channel and in vicinity of the intake. Investigation of flow pattern around lateral intake in channel bends shows that contrary to the case of flow diversion in straight channels, the width of the dividing stream surface near water surface level is greater than that of near bed level. Finally, the effects of position and diversion angle of the lateral intake, discharge ratio and upstream Fronde number on the flow pattern are investigated.
机译:本文涉及使用三维数值模型SSIIM2在存在横向摄入的通道弯曲中流场的数值研究。研究了弯曲对摄入量周围的流动结构的影响,并与实验数据进行了比较。测试在具有横向摄入的U形通道弯曲中进行。进气位于180弯曲的位置115的弯曲部,具有45个导数,实验数据可用于校准和验证数值模型。结果表明,在实验中观察到升级和外部交叉流循环,同时仅由于湍流模型的局限性而被数字模型捕获前者。在进气后的弯曲通道中,实验和数值结果都显示了另一种类型的双蜂窝循环,其中捕获了内部组和自由表面附近的顺时针中心区域循环和逆时针循环(内岸循环)。该研究表明,数值模型非常令人满意地预测通道中的流线,速度场和流动模式以及摄入附近。通道弯曲中横向摄入周围的流动模式的研究表明,与直通道中的流动转移的情况相反,水面水平附近的分割流表面的宽度大于靠近床级的宽度。最后,研究了横向摄入,排出比和上游弗雷金芯数的位置和转移角度的影响。

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