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Surface renewal as a significant mechanism for dust emission

机译:表面更新作为灰尘排放的重要机制

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Wind tunnel experiments of dust emissions from different soil surfaces are carried out to better understand dust emission mechanisms. The effects of surface renewal on aerodynamic entrainment and saltation bombardment are analyzed in detail. It is found that flow conditions, surface particle motions (saltation and creep), soil dust content and ground obstacles all strongly affect dust emission, causing its rate to vary over orders of magnitude. Aerodynamic entrainment is highly effective, if dust supply is unlimited, as in the first 23min of our wind tunnel runs. While aerodynamic entrainment is suppressed by dust supply limits, surface renewal through the motion of surface particles appears to be an effective pathway to remove the supply limit. Surface renewal is also found to be important to the efficiency of saltation bombardment. We demonstrate that surface renewal is a significant mechanism affecting dust emission and recommend that this mechanism be included in future dust models.
机译:对不同土壤表面的灰尘排放的风洞实验进行,以更好地了解粉尘排放机制。详细分析了表面更新对空气动力学夹带和盐化轰击的影响。结果发现流动条件,表面粒子运动(盐酸和蠕变),土壤粉尘含量和地面障碍都强烈影响粉尘排放,导致其速度变化在数量级上。空气动力学夹带非常有效,如果灰尘供应是无限的,如风隧道运行的第一个23min。虽然通过灰尘供应限制抑制了空气动力学夹带,但通过表面粒子的运动似乎是一种有效的途径来消除供电限制。还发现表面更新对于盐化轰击的效率很重要。我们证明,表面更新是一种影响粉尘排放的重要机制,并建议将该机制包含在未来的灰尘模型中。

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