A mechanism for rivulet formation in heated falling films

Author:

Joo S. W.,Davis S. H.,Bankoff S. G.

Abstract

We consider a long-wave evolution equation that governs a draining film on a heated plate and hence is capable of describing both surface-wave and thermocapillary instabilities. When the flow and heat transfer rates are moderate, we show, via weakly nonlinear analysis of a truncated system and numerical simulation of the full nonlinear evolution equation, that coupled temporal instabilities can create surface deformations that lead to an array of rivulets aligned with the flow. This work thus demonstrates a mechanism of rivulet formation based solely on instability phenomena.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference32 articles.

1. Krishnamoorthy, S. , Ramaswamy, B. , & Joo, S. W. 1995 Spontaneous rupture of thin liquid films due to thermocapillarity; A full-scale direct numerical simulation.Phys. Fluids 7,2221–2223.

2. Goussis, D. A. & Kelly, R. E. 1990 On the thermocapillary instabilities in a liquid layer heated from below.Intl J. Heat Mass Transfer 33,2237–2245.

3. Lin, S. P. 1975 Stability of liquid flow down a heated inclined plane.Lett. Heat Mass Transfer 2,361.

4. Pearson, J. R. A. 1958 On convection cells induced by surface tension.J. Fluid Mech. 4,489–500.

5. Davis, S. H. 1983 Rupture of thin liquid films. In Waves on Fluid Interfaces (ed. R. E. Meyer ),pp.291–302.Academic.

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