Adding Gusts to a Mobile Wind Tunnel: Experimental Setup and Effect of Simulated Gusts on Horizontal Transport

M. Marzen
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Abstract

Wind erosivity has an intermittent character due to complicated interactions between air streams, surface characteristics, and sediment particles. To experimentally investigate the effect of a sudden and local gust on sediment entrainment, a simple setup was installed in a mobile wind tunnel. One, three, and five consecutive gusts were applied and compared with standard test conditions with steady wind. The applied wind was characterized by total test duration (s), duration of gust (s), mean velocity, peak velocity (m s−1), gust factor, and transport capacity based on sediment-specific threshold velocity. The eroded material was collected by sediment containers. The results suggest that 1. the application of gusts inside the mobile wind tunnel setup is feasible but related to uncertainty concerning the applied wind conditions, and 2. the horizontal transport rate increased with the number of applied gusts. While the highest rates were measured during five gusts on sand, the relative effect of gusts was most accentuated in the comparison of one gust to no gust on loam. The findings highlight how temporally and spatially limited gust impact causes extreme particle entrainment. These particles may subsequently either start erosion or enter vertical dust transport.
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在移动风洞中增加阵风:实验装置和模拟阵风对水平输送的影响
由于气流、地表特征和沉积物颗粒之间复杂的相互作用,风蚀作用具有间歇性。为了实验研究突发性局部阵风对沉积物夹带的影响,在移动风洞中安装了一个简单的装置。试验中连续刮起了一次、三次和五次阵风,并与稳定风的标准试验条件进行了比较。试验风的特征包括总试验持续时间(秒)、阵风持续时间(秒)、平均速度、峰值速度(米/秒-1)、阵风系数以及基于特定沉积物阈值速度的迁移能力。侵蚀物质由沉积物容器收集。结果表明:1.在移动风洞内应用阵风是可行的,但与应用风力条件的不确定性有关;2.水平迁移率随应用阵风次数的增加而增加。虽然在沙地上测得的最高水平迁移率是在五次阵风期间测得的,但在壤土上一次阵风与无阵风的对比中,阵风的相对影响最为突出。研究结果凸显了在时间和空间上有限的阵风影响是如何导致极端颗粒夹带的。这些颗粒随后可能会开始侵蚀或进入垂直尘土飞扬。
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