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Dependency of particle size distribution at dust emission on friction velocity and atmospheric boundary-layer stability

机译:粒度分布在灰尘速度和大气边界层稳定性上的灰尘排放依赖性

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Particle size distribution of dust at emission (dust PSD) is an essential quantity to estimate in dust studies. It has been recognized in earlier research that dust PSD is dependent on soil properties (e.g. whether soil is sand or clay) and friction velocity, u?, which is a surrogate for surface shear stress and a descriptor for saltation-bombardment intensity. This recognition has been challenged in some recent papers, causing a debate on whether dust PSD is “invariant” and the search for its justification. In this paper, we analyse the dust PSD measured in the Japan Australian Dust Experiment and show that dust PSD is dependent on u? and on atmospheric boundary-layer (ABL) stability. By simple theoretical and numerical analysis, we explain the two reasons for the latter dependency, which are both related to enhanced saltation bombardment in convective turbulent flows. First, u? is stochastic and its probability distribution profoundly influences the magnitude of the mean saltation flux due to the non-linear relationship between saltation flux and u?. Second, in unstable conditions, turbulence is usually stronger, which leads to higher saltation-bombardment intensity. This study confirms that dust PSD depends on u? and, more precisely, on the probability distribution of u?, which in turn is dependent on ABL stability; consequently, dust PSD is also dependent on ABL. We also show that the dependency of dust PSD on u? and ABL stability is made complicated by soil surface conditions. In general, our analysis reinforces the basic conceptual understanding that dust PSD depends on saltation bombardment and inter-particle cohesion.
机译:排放(灰尘PSD)粉尘的粒度分布是灰尘研究中估计的必要量。在早期的研究中已经认识到,灰尘PSD取决于土壤性质(例如土壤是砂或粘土)和摩擦速度,Uβ,其是表面剪切应力的替代品和盐化 - 轰击强度的描述符。这种认可在一些最近的论文中受到质疑,导致灰尘PSD是“不变”的辩论,并寻求其理由。在本文中,我们分析了日本澳大利亚尘埃实验中测量的灰尘PSD,并显示灰尘PSD依赖于U?在大气边界层(ABL)稳定性上。通过简单的理论和数值分析,我们解释了后一种依赖性的两个原因,这两种原因都与对流湍流中的增强盐轰击有关。首先,你?随机性,其概率分布深刻地影响平均盐化助焊剂的大小由于盐通量和U之间的非线性关系。其次,在不稳定的条件下,湍流通常更强,这导致较高的盐轰击强度。这项研究证实了灰尘PSD取决于你?并且,更确切地说,在U?,这反过来取决于ABL稳定性;因此,灰尘PSD也取决于ABL。我们还表明尘埃PSD对U的依赖?通过土壤表面状况使ABL稳定性复杂化。一般来说,我们的分析强化了尘埃PSD取决于盐化轰击和颗粒间内聚力的基本概念理解。

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