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Simplified models for turbulent diffusion: Theory, numerical modelling, and physical phenomena [Review]

机译:湍流扩散的简化模型:理论,数值模型和物理现象[评论]

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Several simple mathematical models for the turbulent diffusion of a passive scalar field are developed here with an emphasis on the symbiotic interaction between rigorous mathematical theory (including exact solutions), physical intuition. and numerical simulations. The homogenization theory for periodic velocity fields and random velocity fields with short-range correlations is presented and utilized to examine subtle ways in which the flow geometry can influence the large-scale effective scalar diffusivity. Various forms of anomalous diffusion are then illustrated in some exactly solvable random velocity field models with long-range correlations similar to those present in fully developed turbulence. Here both random shear layer models with special geometry but general correlation structure as well as isotropic rapidly decorrelating models are emphasized. Some of the issues studied in detail in these models are superdiffusive and subdiffusive transport, pair dispersion, fractal dimensions of scalar interfaces, spectral scaling regimes, small-scale and large-scale scaler intermittency, and qualitative behavior over finite time intervals. Finally, it is demonstrated how exactly solvable models can be applied to test and design numerical simulation strategies and theoretical closure approximations for turbulent diffusion. (C) 1999 Elsevier Science B.V. All rights reserved. [References: 349]
机译:这里开发了几个用于被动标量场湍流扩散的简单数学模型,重点是严格的数学理论(包括精确解)与物理直觉之间的共生相互作用。和数值模拟。提出了具有短程相关性的周期性速度场和随机速度场的均质化理论,并用于研究流体几何形状可以影响大规模有效标量扩散率的微妙方式。然后在一些完全可解决的随机速度场模型中说明了各种形式的异常扩散,这些模型具有与完全发展的湍流中存在的长期相关性相似的远距离相关性。这里既强调具有特殊几何形状但具有一般相关结构的随机剪切层模型,也强调各向同性快速去相关模型。在这些模型中详细研究的一些问题是超扩散和亚扩散传输,线对色散,标量接口的分形维数,频谱缩放方式,小规模和大规模缩放器的间断性以及在有限时间间隔内的定性行为。最后,它演示了如何将精确可解的模型应用于测试和设计数值模拟策略以及湍流扩散的理论闭合近似。 (C)1999 Elsevier Science B.V.保留所有权利。 [参考:349]

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