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Scaling of temperature- and stress-dependent viscosity convection

Physics of Fluids · 1995 · Vol. 7(2) · pp. 266–274
V. S. Solomatov

Abstract

Simple scaling analysis of temperature- and stress-dependent viscosity convection with free-slip boundaries suggests three convective regimes: the small viscosity contrast regime which is similar to convection in a fluid whose viscosity does not depend on temperature, the transitional regime characterized by self-controlled dynamics of the cold boundary layer and the asymptotic regime in which the cold boundary becomes stagnant and convection involves only the hottest part of the lid determined by a rheological temperature scale. The first two regimes are usually observed in numerical experiments. The last regime is similar to strongly temperature-dependent viscosity convection with rigid boundaries studied in laboratory experiments.

Material Dynamics and PropertiesFluid Dynamics and Turbulent FlowsRheology and Fluid Dynamics StudiesConvectionPhysicsViscosityScalingMechanicsBoundary layerCombined forced and natural convectionThermodynamicsTemperature dependence of liquid viscosityBoundary value problem
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