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湍流壁面流动内部与外部区域之间的相互作用。

The interaction between inner and outer regions of turbulent wall-bounded flow.

作者信息

Morrison Jonathan F

机构信息

Department of Aeronautics, Imperial College, London SW7 2AZ, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2007 Mar 15;365(1852):683-98. doi: 10.1098/rsta.2006.1947.

Abstract

The nature of the interaction between the inner and outer regions of turbulent wall-bounded flow is examined. Townsend's theory of inactive motion is shown to be a first-order, linear approximation of the effect of the large eddies at the surface that acts as a quasi-inviscid, low-frequency modulation of the shear-stress-bearing motion. This is shown to be a 'strong' asymptotic condition that directly expresses the decoupling of the inner-scale active motion from the outer-scale inactive motion. It is further shown that such a decoupling of the inner and outer vorticity fields near the wall is inappropriate, even at high Reynolds numbers, and that a 'weak' asymptotic condition is required to represent the increasing effect of outer-scale influences as the Reynolds number increases. High Reynolds number data from a fully developed pipe flow and the atmospheric surface layer are used to show that the large-scale motion penetrates to the wall, the inner-outer interaction is not describable as a linear process and the interaction should more generally be accepted as an intrinsically nonlinear one.

摘要

本文研究了湍流壁面流动内部区域与外部区域之间相互作用的本质。汤森德的无作用运动理论被证明是表面大涡旋效应的一阶线性近似,该效应表现为准无粘、低频调制的承受剪切应力的运动。这被证明是一种“强”渐近条件,它直接表达了内尺度主动运动与外尺度无作用运动的解耦。进一步表明,即使在高雷诺数下,壁面附近内、外涡度场的这种解耦也是不合适的,并且需要一种“弱”渐近条件来表示随着雷诺数增加外尺度影响的增强效应。来自充分发展的管道流动和大气边界层的高雷诺数数据表明,大尺度运动穿透到壁面,内-外相互作用不能描述为线性过程,并且这种相互作用更普遍地应被视为本质上的非线性相互作用。

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