On driving a viscous fluid out of a tube

Author:

Cox B. G.

Abstract

Two problems are considered. First, it is shown experimentally that the amount of viscous fluid left on the walls of a horizontal tube, when it is expelled by an inviscid fluid, reaches an asymptotic value of 0.60 of the amount required to fill the tube, when the parameter μU/T is increased, μ and T being the coefficients of viscosity and interfacial surface tension respectively, and U the velocity of the interface between the two fluids. Secondly, by neglecting the inertia terms in the equations of motion and the effect of gravity, a theory for the passage of this type of bubble is presented, together with experimental results in support of the theory. It is shown that such a solution is only valid under certain other restrictions, and then only to within half a tube diameter of the nose of the bubble.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference7 articles.

1. Watson, G. N. 1944 Theory of Bessel Functions ,2nd ed. Cambridge University Press.

2. Saffman, P. G. & Taylor, G. I. 1958 Proc. Roy. Soc. A,245,312.

3. Goldstein, S. 1938 Modern Developments in Fluid Dynamics , Vol. 1.Oxford University Press.

4. Bretherton, F. P. 1961 J. Fluid Mech. 10,166.

5. Fordham, S. 1948 Proc. Roy. Soc. A,194,1.

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