How rapidly is a passive scalar mixed within closed streamlines?

Author:

Rhines P. B.,Young W. R.

Abstract

The homogenization of a passive ‘tracer’ in a flow with closed mean streamlines occurs in two stages: first, a rapid phase dominated by shear-augmented diffusion over a time ≈P1/3(L/U), where the Péclet number P=LU/κ (L,U and κ are lengthscale, velocity scale and diffusivity), in which initial values of the tracer are replaced by their (generalized) average about a streamline; second, a slow phase requiring the full diffusion time ≈ L2/κ. The diffusion problem for the second phase, where tracer isopleths are held to streamlines by shear diffusion, involves a generalized diffusivity which is proportional to κ, but exceeds it if the streamlines are not circular. Expressions are also given for flow fields that are oscillatory rather than steady.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference23 articles.

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2. Rhines, P. B. & Young, W. R. 1982a Homogenization of potential vorticity in planetary gyres J. Fluid Mech. 122,347–367.

3. Moffatt, H. K. & Kamkar, H. 1982 The time-scale associated with flux expulsion. To appear in Proc. Workshop on The Theory of Stellar and Planetary Magnetism. Budapest .

4. Saffman, P. 1962 The effect of wind shear on horizontal spreas from an instantaneous ground source Q. J. R. Met. Soc. 88,382–393.

5. Young, W. R. & Rhines, P. B. 1982 A theory of wind-driven ocean circulation. II. Western Boundary layer J. Mar. Res. 40,849–872.

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