Effects of the lower boundary on the head of a gravity current

Author:

Simpson John E.

Abstract

Experimental measurements of the advancing head of a gravity current are described. The head, of depthdin mean cross-section and advancing at mean speedU, has an elevated nose whose mean heighthsatisfiesh/d= 0·61Re-0·23±0·01through the range 300 <Re< 10000 (Re=Ud/ν). Ashifting pattern of lobes and clefts ranges across the head, in which the mean lobe width$\overline{b}$is found experimentally to satisfy$\overline{b}/d = 7.4\,Re^{-0.39\pm 0.02}$. By moving the floor in the direction of the current, or by introducing a thin dense layer beneath it, the lobes and clefts can be suppressed and a purely two-dimensional flow obtained. It is concluded that the lower boundary plays an essential role in determining the substructure of the head and that this originates in convective instability as the head rides over less dense fluid.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference13 articles.

1. Ellison, T. H. 1961 Science Progress,49,57.

2. Middleton, G. V. 1966 Can. J. Earth Sci. 3,523.

3. Wood, I. R. 1965 University N.S. Wales. Water Res. Lab., Manly Vale Rep. no. 81.

4. Ippen, A. T. & Harleman, D. R. F. 1952 Proc. N.B.S. Symp. on Gravity Waves, Nat. Bur. Stand. Circ. 521,79.

5. Daly, B. J. & Pracht, W. E. 1968 Phys. Fluids,11,15.

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