首页> 外文期刊>Stochastic environmental research and risk assessment >Dynamic mechanism of turbulent flow in meandering channels: considerations for deflection angle
【24h】

Dynamic mechanism of turbulent flow in meandering channels: considerations for deflection angle

机译:弯道内湍流的动力机理:偏转角的考虑

获取原文
获取原文并翻译 | 示例
           

摘要

To find turbulent flow structure inside meandering channels, three physical models of river meanders representing strongly curved bend, mild bend and elongated symmetrical meander loop were tested in this paper. Instantaneous velocity data in three dimensions were measured using Micro-ADV at different cross sections of these models. Depth averaged velocity vectors, streamwise velocity, secondary currents, turbulent and mean flow kinetic energy were investigated with respect to the sediment deposition pattern. In order to gain more regarding the force acting the sediment particles, three dimensional velocity fluctuations were analyzed in detailed inside the elongated symmetrical meander loop. Occurrence frequency, transition probability and angle of attack for different events were also computed for the points close to the bed. Of the present results, the importance of sweeps and ejections on sediment deposition can be detected. Further, distribution of bursting events is presented through the water column and compared the results with the previous works. Importantly, occurrence of fluctuating velocities in three dimensions at different locations inside the river meanders in addition to the effect of mean flow and turbulent components is responsible for sediment transport. Streamwise velocity distribution through the depth is also compared with some previous mathematical models. Researchers seeking the better control over the river morphology can apply this method without sacrificing much time and cost. This study is also included some insights to be pursued by future works.
机译:为了找到蜿蜒河道内的湍流结构,本文测试了三种代表强烈弯曲,缓和弯曲和细长对称蜿蜒环流的河道物理模型。使用Micro-ADV在这些模型的不同截面上测量了三维瞬时速度数据。相对于沉积物沉积模式,研究了深度平均速度矢量,水流速度,二次流,湍流和平均流动能。为了获得更多有关作用于沉积物颗粒的力的信息,在细长对称曲折环内部详细分析了三维速度波动。还为靠近床的点计算了不同事件的发生频率,过渡概率和攻角。在目前的结果中,可以检测到清扫和喷射对沉积物沉积的重要性。此外,通过水柱显示了突发事件的分布,并将结果与​​先前的工作进行了比较。重要的是,除了平均流量和湍流成分的影响外,在河曲折内的不同位置在三个维度上都出现了波动的速度,这也是造成泥沙输送的原因。沿深度的水流速度分布也与以前的一些数学模型进行了比较。寻求更好地控制河流形态的研究人员可以应用这种方法而无需牺牲很多时间和成本。这项研究还包括一些未来工作将寻求的见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号