Relation of turbulent mass transfer to a wall at high Schmidt numbers to the velocity field

Author:

Sirkar Kamalesh K.,Hanratty Thomas J.

Abstract

Turbulent mass transfer to a wall at high Schmidt numbers is controlled by the velocity field within the viscous sublayer. Measurements have been obtained of the root-mean-square fluctuating mass transfer coefficient and the frequency spectrum of the fluctuating mass transfer coefficient for a Schmidt number of about 2300. From an order-of-magnitude analysis it is concluded that flow fluctuations in the direction of mean flow have little effect on the mass transfer fluctuations. A comparison of the mass transfer spectrum with the spectrum of the component of the velocity gradient in the transverse directionszreveals that the high-frequency portion of theszspectrum is not effective in transferring mass. Approximate relations between the mass transfer spectrum and theszspectrum are developed for high frequencies and for low frequencies.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference14 articles.

1. Gordon, S. L. 1963 M.S. thesis, University of California, Berkeley.

2. Rice, S. O. 1954 Selected Papers on Noise and Stochastic Processes . (Ed. N. Wax )Dover.

3. Davenport, W. B. & Root, W. L. 1958 An Introduction to the Theory of Random Signal and Noise .McGraw-Hill.

4. Sirkar, K. K. 1969 Ph.D. thesis,University of Illinois.

5. Schraub, F. A. & Kline, S. J. 1965 Rep. MD-12, Mech. Eng. Dept. Stanford University.

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