Abstract:
Thermocapillary flows of a fluid in a lamina with a rigid lower wall and a free upper surface, along which the temperature gradient is given in the radial direction, are investigated for large Marangoni numbers. Self-similar solutions which describe the axisymmetric flow regimes of a fluid without the circumferential velocity component are constructed numerically and asymptotically for a system of Prandtl equations. It is shown that a pair of new self-similar flow regimes of a fluid with rotation branches off from the regimes obtained. The new regimes ere calculated numerically and asymptotically.
Citation:
V. A. Batishchev, “Bifurcation of self-similar solutions describing a thermocapillary flow of a fluid in a thin layer”, Prikl. Mekh. Tekh. Fiz., 40:3 (1999), 137–142; J. Appl. Mech. Tech. Phys., 40:3 (1999), 479–484