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Secondary flow in a sine-generated open channel

机译:正弦波产生的明渠中的二次流

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Experimental works in a sinuous open channel were performed to identify the vortical structures. Although the nature of such vortices are 3D and they mainly associated with low-speed and low-pressure zones in channel, the hypotheses of 2D models for the prediction of phase lag and bed topography seems to be satisfactory. In the theoretical part of the present paper by the use of the dynamic equation in the lateral direction for a curved open channel an equation for the velocity distribution in the lateral direction is extracted. Then, assuming a sine-generated channel whose curvature is a function of its longitudinal position, the phase lag between the secondary flow and the main flow is obtained. Next, by the use of different assumptions for the flow characteristics, different phase-lag formulas are extracted. Finally using the concept of incipient motion, variation of bed topography in a complete wavelength of a sine-generated open channel is presented.
机译:在弯曲的明渠中进行了实验工作以识别涡旋结构。尽管这种涡旋的性质是3D的,并且主要与通道中的低速和低压区域有关,但是用于预测相位滞后和床面地形的2D模型的假设似乎令人满意。在本文的理论部分中,对于弯曲的明渠,通过使用横向方向的动力学方程,可以提取横向方向的速度分布方程。然后,假设曲率是其纵向位置的函数的正弦生成通道,则获得了次级流和主流之间的相位滞后。接下来,通过对流动特性使用不同的假设,提取不同的相位滞后公式。最后,使用初始运动的概念,提出了在正弦波产生的明渠的整个波长范围内床形的变化。

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