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Effects of the Magnus and Saffman forces on the saltation trajectories of sand grain

机译:马格努斯和萨夫曼力对沙粒盐化轨迹的影响

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摘要

Saltating sand grains are the primary component of airborne sand and account for 75% of all sand transport flux. The saltation height and horizontal distance traveled by sand grains are key factors in sand-control engineering. In addition to gravity and aerodynamic drag, the Magnus and Saffman forces also play important roles in saltation. To quantify the magnitudes of these forces in saltation we used high-speed multi-flash photography to observe the movement of saltating sand grains in a wind tunnel; this proved to be an efficient technique for determining the movement and rotational velocities of grains of natural sand with grain sizes ranging from 0.2 to 0.3 mm and shear velocities (u*) of 0.67, 0.83, and 0.87 m s~(-1). The rotational speed of saltating sand grains varied between 200 and 800 rev s~(-1); mean clockwise and anticlockwise rotational speeds were nearly identical, and both increased with increasing saltation height. With saltation heights divided into 1 cm intervals, the rotational speeds followed a Lorentzian distribution. Calculations based on a saltation model showed that the maximum increases in saltation height and in horizontal distance due to the Magnus force were 10.2 and 24.9%, respectively. The rate of increase of both parameters increased with increasing lift-off angle. The maximum increases in saltation height and horizontal distance of sand grains caused by the Saffman force were only 4.6% and 3.7%, respectively.
机译:盐分沙粒是空气传播的沙子的主要成分,占所有沙子输送通量的75%。沙粒的盐分高度和水平距离是防砂工程的关键因素。除了重力和空气阻力外,马格努斯和萨夫曼力在盐分作用中也起着重要作用。为了量化盐分作用中这些力的大小,我们使用了高速多重闪光摄影技术来观察盐分在风洞中的运动。事实证明,这是一种有效的技术,可用于确定粒径范围为0.2至0.3 mm的天然砂粒的运动和旋转速度以及0.67、0.83和0.87 m s〜(-1)的剪切速度(u *)。盐化沙粒的转速在200和800 rev s〜(-1)之间变化;平均顺时针和逆时针旋转速度几乎相同,并且都随着盐化高度的增加而增加。将盐分高度分为1 cm间隔时,旋转速度遵循洛伦兹分布。基于盐分模型的计算表明,由于马格努斯力的作用,盐分高度和水平距离的最大增加分别为10.2%和24.9%。两个参数的增加率都随着离地角的增加而增加。萨夫曼力引起的盐分高度和沙粒水平距离的最大增加分别仅为4.6%和3.7%。

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