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New measures of wind angular dispersion in three dimensions

机译:三维风角分散的新措施

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Wind is a 3D vector quantity. However, it is frequently found that the vertical component is much smaller in magnitude than the horizontal ones and acts over shorter distances so that its effect is considered negligible. As a result of this, wind is often treated as a two dimensional circular variable. In fact, most of the statistical treatment used to derive the wind angular dispersion, a parameter that is very important in determining the rate of diffusion of pollutants, is based on this assumption. Nevertheless, the reduction of a dimension might not always be justified. A case in point occurs when considering air flow in a street canyon whereby all three directions of air flow can be significant. In such a situation, a 3D measure of angular dispersion would be much more appropriate. For this reason, this work concentrates on establishing consistent 3D measures of angular dispersion. Thus a detailed geometric analysis of an existing and widely used measure of 3D angular dispersion was carried out. This showed that this measure accounts for dispersion mainly along one direction. In order to improve on this, a new set of measures for angular dispersion that account for all three directions is derived using some recently proposed measures of angular dispersion. It is also shown that these new measures can be further extended to any dimension.
机译:风是3d矢量数量。然而,经常发现垂直分量的幅度小得多,而不是水平的部件,并且作用在较短的距离上,使其效果被认为是可忽略不计的。结果,风通常被视为二维圆形变量。实际上,大多数用于导出风角色散的统计处理,在确定污染物扩散速率时非常重要的参数是基于这种假设。尽管如此,维度的减少可能并不总是有合理的。在考虑街道峡谷中的空气流动时,发生在一定位置的情况,其中所有三个气流方向都可能是显着的。在这种情况下,角度分散的3D度量将更合适。出于这个原因,这项工作专注于建立一致的角度分散测量。因此,进行了对现有和广泛使用的3D角度分散量度的详细几何分析。这表明该措施主要沿一个方向分散。为了改善这一点,使用一些最近提出的角度分散测量来推导出占所有三个方向的角度分散的新措施。还显示出这些新措施可以进一步扩展到任何维度。

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