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首页> 外文期刊>Geomorphology >Height profile of the mean velocity of an aeolian saltating cloud: Wind tunnel measurements by Particle Image Velocimetry
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Height profile of the mean velocity of an aeolian saltating cloud: Wind tunnel measurements by Particle Image Velocimetry

机译:风成盐云平均速度的高度剖面:通过粒子图像测速仪测量风洞

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The velocity of saltating particles is an important parameter in studying the aeolian sand movement. We used Particle Image Velocimetry to measure the variation with height of the mean particle velocity of a saltating cloud over a loose sand surface in a wind tunnel. The results suggest that both the horizontal and vertical particle velocities fit the Gaussian distribution well, and that the mean particle velocity of a saltating cloud varies with wind velocity, particle size and the height above bed. The mean horizontal velocity is mainly the result of acceleration by the wind and increases with an increase in friction wind velocity but decreases with an increase in grain size because greater wind velocity causes more acceleration and finer particles are more easily accelerated at a given wind velocity. It also increases with an increase in height by a power function, in agreement with previous results obtained by other methods such as the high-speed multi-flash photographic method and Particle Dynamics Analyzer (PDA), reflecting, first, the increase in wind velocity with height through the boundary layer, and second, the longer trajectory-particle path length increases with height and affords a longer time for acceleration by the wind. An empirical model relating the mean horizontal particle velocity and height, friction wind velocity as well as particle size is developed. The ratio of the mean horizontal particle velocity to the clean wind velocity at the same height increases with height but decreases with grain size. The magnitude of mean vertical velocity is much less (one or two orders less) compared with the mean horizontal velocity. The average movement in the vertical direction of a saltating cloud is upward (the mean vertical velocity is positive). Although the upward velocity of a saltating particle should decrease with height due to gravity the mean vertical (upward) velocity (the average of both ascending and descending particles) generally shows a tendency to increase with height. It seems that at higher elevations the data are more and more dominated by the 'high-flyers'. The underlying mechanism for the mean vertical velocity distribution patterns needs to be clarified by further study.
机译:盐化颗粒的速度是研究风沙运动的重要参数。我们使用了粒子图像测速技术来测量风洞中松散的沙子表面上盐化云的平均粒子速度随高度的变化。结果表明,水平和垂直粒子速度都很好地拟合了高斯分布,并且盐雾云的平均粒子速度随风速,粒子大小和床高而变化。平均水平速度主要是风加速的结果,并且随着摩擦风速的增加而增加,但随着晶粒尺寸的增加而减小,因为更大的风速会导致更大的加速度,而细颗粒在给定的风速下更容易加速。它也随着幂函数的增加而增加,这与其他方法(例如高速多重闪光摄影方法和粒子动力学分析仪(PDA))先前获得的结果一致,首先反映了风速的增加穿过边界层的高度较高;其次,较长的轨迹粒子路径长度随高度增加,并为风加速提供了更长的时间。建立了平均水平粒子速度和高度,摩擦风速以及粒子大小的经验模型。在相同高度处,平均水平粒子速度与清洁风速度之比随高度增加而随晶粒尺寸减小。与平均水平速度相比,平均垂直速度的幅度要小得多(少一两个数量级)。盐雾垂直方向的平均运动是向上的(平均垂直速度为正)。尽管由于重力作用,盐化颗粒的向上速度应随高度降低,但平均垂直(向上)速度(上升和下降颗粒的平均值)通常显示出随高度增加的趋势。似乎在海拔较高的地方,数据越来越多地被“高飞者”所控制。平均垂直速度分布模式的潜在机制有待进一步研究。

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