Recent developments in oscillatory thermocapillary flowsRecent research aimed at understanding the transition of thermocapillary flows from steady to oscillatory states is described. Particular attention is given to conditions for the onset of the oscillations and how they are influenced by changes in configuration such as geometry and thermal signature. It is shown that, for high Prandtl number fluids, the oscillations are caused by the coupling among the imposed thermal signature, the surface flow, and the surface deformations. The surface deformations cause a time lag between the surface and bulk-return flows and alter the driving force (surface-temperature gradient).
Document ID
19920030230
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Ostrach, Simon (Case Western Reserve Univ. Cleveland, OH, United States)
Kamotani, Yasuhiro (Case Western Reserve University Cleveland, OH, United States)