Long-wave instabilities of heated falling films: two-dimensional theory of uniform layers

Author:

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

Abstract

A layer of volatile viscous liquid drains down a uniformly heated inclined plate. Long-wave instabilities of the uniform film are studied by deriving an evolution equation for two-dimensional disturbances. This equation incorporates viscosity, gravity, surface tension, thermocapillarity, and evaporation eifects. The linear theory derived from this describes the competition among the instabilities. Numerical solution of the evolution equation describes the finite-amplitude behaviour that determines the propensity for dryout of the film. Among the phenomena that appear are the tendency to wave breaking, the creation of secondary structures, and the preemption of dryout by mean flow.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference27 articles.

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3. Bankoff, S. G. 1971 Stability of liquid flow down a heated inclined plane.Intl J. Heat Mass Transfer.14,377–385.

4. Spindler, B. , Solesio, J. N. & Delhaye, J. M. 1978 On the equations describing the instabilities of liquid films with interfacial phase change. In Two-Phase Momentum, Heat and Mass Transfer in Chemical Process and Energy Engineering Systems . (ed. F. Durst , G. V. Tsiklauri & N. H. Afgan ), vol. 1,pp. 339–344.Hemisphere.

5. Asme. Yih, C.-S. 1963 Stability of liquid flow down an inclined plane.Phys. Fluids.6,321–334.

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