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Numerical study on two dimensional distribution of streamwise velocity in open channel turbulent flows with secondary current effect

机译:具有次级电流效应的开放通道湍流流动流动速度二维分布的数值研究

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FOR STUDYING MECHANISM OF SEDIMENT TRANSPORT IN RIVER FLOWS, open channel flow is a prototype. Flow has always three components of velocity for all types of channel geometry and for a time independent uniform flow along streamwise or main flow direction, all the components of velocity are functions of lateral and vertical coordinates. The present study investigates the two dimensional distribution of streamwise (or longitudinal) velocity starting from the Reynolds averaged Navier-Stokes equation for a turbulent open channel flow which is steady and uniform along the main flow direction. Secondary flows both along the vertically upward direction and along the lateral direction are considered which are also taken as functions of lateral and vertical coordinates. Inclusion of the secondary current brings the effect of dip phenomenon in the model. The resulting second order partial differential equation is solved numerically. The model is validated for all the cross-sectional, transverse and centreline velocity distribution by comparing with existing relevant set of experimental data and also with an existing model. Comparison results show good agreement with data as well as with the previous model proving the efficiency of the model. It is found that the transverse velocity distribution depends on the formation of circular vortex in the cross-sectional plane and becomes periodic as the number of circular vortex increases for increasing aspect ratios.
机译:为了研究机理沙输运河流,明渠流动的原型。流具有速度始终为所有类型的信道的几何形状和用于沿顺流或主流动方向的时间独立均匀流动的三个分量,速度的所有组件是横向和垂直坐标的功能。本研究调查流向(或纵向)的速度从开始雷诺数的二维分布平均Navier-Stokes方程为它是稳定湍流明渠流动和均匀的沿着主流动方向。二次流既沿垂直向上的方向和沿横向方向被认为是,其也作为横向和垂直坐标的功能。次级电流的夹杂物带来的浸现象模型中的效果。将所得的第二阶偏微分方程进行数值求解。该模型通过与现有的有关组实验数据,并且还与现有模型进行比较验证的所有截面,横向和中心线速度分布。比较结果与数据以及与前代车型证明了模型的有效性一致。据发现,横向速度分布依赖于在横截面平面形成圆形涡流的和变成周期性作为用于增加纵横比圆形涡流的数目增加。

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