首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Forces on stationary particles in near-bed turbulent flows
【24h】

Forces on stationary particles in near-bed turbulent flows

机译:在近床湍流中作用于静止粒子的力

获取原文
获取原文并翻译 | 示例
           

摘要

In natural flows, bed sediment particles are entrained and moved by the fluctuating forces, such as lift and drag, exerted by the overlying flow on the particles. To develop a better understanding of these forces and the relation of the forces to the local flow, the downstream and vertical components of force on near-bed fixed particles and of fluid velocity above or in front of them were measured synchronously at turbulence-resolving frequencies (200 or 500 Hz) in a laboratory flume. Measurements were made for a spherical test particle fixed at various heights above a smooth bed, above a smooth bed downstream of a downstream-facing step, and in a gravel bed of similarly sized particles as well as for a cubical test particle and 7 natural particles above a smooth bed. Horizontal force was well correlated with downstream velocity and not correlated with vertical velocity or vertical momentum flux. The standard drag formula worked well to predict the horizontal force, but the required value of the drag coefficient was significantly higher than generally used to model bed load motion. For the spheres, cubes, and natural particles, average drag coefficients were found to be 0.76, 1.36, and 0.91, respectively. For comparison, the drag coefficient for a sphere settling in still water at similar particle Reynolds numbers is only about 0.4. The variability of the horizontal force relative to its mean was strongly increased by the presence of the step and the gravel bed. Peak deviations were about 30% of the mean force for the sphere over the smooth bed, about twice the mean with the step, and 4 times it for the sphere protruding roughly half its diameter above the gravel bed. Vertical force correlated poorly with downstream velocity, vertical velocity, and vertical momentum flux whether measured over or ahead of the test particle. Typical formulas for shear-induced lift based on Bernoulli's principle poorly predict the vertical forces on near-bed particles. The measurements suggest that particle-scale pressure variations associated with turbulence are significant in the particle momentum balance.
机译:在自然流中,床层沉积物颗粒会受到上覆流作用在颗粒上的波动力(例如,升力和阻力)的夹带和移动。为了更好地理解这些力以及这些力与局部流的关系,在湍流分辨频率下同步测量了近床固定颗粒上的力的下游分量和垂直分量以及它们上方或前方的流体速度。 (200或500 Hz)在实验室水槽中。对球形测试颗粒进行了测量,这些球形测试颗粒固定在光滑床上方,面向下游步骤下游的光滑床上方的各种高度上,并且在砾石床中粒径相同,还测试了立方测试颗粒和7种天然颗粒在光滑的床上。水平力与下游速度密切相关,与垂直速度或垂直动量通量无关。标准阻力公式可以很好地预测水平力,但是所需的阻力系数值明显高于通常用于模拟床荷载运动的阻力系数。对于球体,立方体和自然粒子,平均阻力系数分别为0.76、1.36和0.91。为了比较,以相似的雷诺数在静止水中沉降的球体的阻力系数仅为约0.4。台阶和砾石床的存在极大地增加了水平力相对于其平均值的变化。峰值偏差约为球体在光滑床面上的平均力的30%,约为台阶平均力的两倍,而球体的峰值偏差是砾石床上方直径的一半的四倍。垂直力与下游速度,垂直速度和垂直动量通量之间的相关性很差,无论是在测试粒子上方还是前方测量。基于伯努利原理的典型剪切诱导升力公式很难预测近床颗粒的垂直力。这些测量表明,与湍流相关的颗粒级压力变化在颗粒动量平衡中非常重要。

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