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首页> 外文期刊>Journal of Statistical Physics >DIFFUSING PASSIVE TRACERS IN RANDOM INCOMPRESSIBLE FLOWS - STATISTICAL TOPOGRAPHY ASPECTS
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DIFFUSING PASSIVE TRACERS IN RANDOM INCOMPRESSIBLE FLOWS - STATISTICAL TOPOGRAPHY ASPECTS

机译:被动不可追踪流动中的被动追踪器扩散-统计地形学方面

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摘要

The paper studies statistical characteristics of the passive tracer concentrations and of its spatial gradient, in random incompressible velocity fields from the viewpoint of statistical topography. The statistics of interest include mean values, probability distributions, as well as various functionals characterizing topographic features of tracers. The functional approach is used. We consider the influence of the mean flow (the linear shear flow) and the molecular diffusion coefficient on the statistics of the tracer. Most of our analysis is carried out in the framework of the delta-correlated (in time) approximation and conditions for its applicability are established. But we also consider the diffusion approximation scheme for finite correlation radius. The latter is applied to a diffusing passive tracer that undergoes sedimentation in a random velocity field. [References: 51]
机译:本文从统计地形学的角度研究了随机不可压缩速度场中被动示踪剂浓度及其空间梯度的统计特征。感兴趣的统计信息包括平均值,概率分布以及表征示踪剂地形特征的各种功能。使用了功能方法。我们考虑平均流量(线性剪切流量)和分子扩散系数对示踪剂统计的影响。我们的大多数分析都是在与时间相关的δ近似框架内进行的,并确定了其适用条件。但是我们也考虑了有限相关半径的扩散近似方案。后者适用于在无规速度场中发生沉降的扩散无源示踪剂。 [参考:51]

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