Structure of a free convective flow over a horizontal heated surface under conditions of conjugate heat transfer

Author:

Khrapunov E F,Potechin I V,Chumakov Y S

Abstract

Abstract The paper presents the results of an experimental and numerical study of the structure of a plume formed over a heated disk under conditions of conjugate heat transfer in a wide range of Grashof number. The data on the temperature field in the plume is compared with the visualization patterns. Numerical simulation was performed using the Ansys Fluent code, where the problem of the flow of a compressible gas in conditions of conjugate heat transfer in an unsteady formulation was solved under the assumption of laminar flow regime. As a result of a comparison of the results of physical and numerical experiments, there is a conclusion about a good qualitative concurrence of the flow structure. The heat transfer characteristics were studied experimentally and numerically: the local heat transfer coefficient, the heat flow from the heated disk, and the local and average Nusselt numbers. It is shown that the establishment of a periodic flow regime leads to a violation of the monotonicity of the distribution of the local heat transfer coefficient. In general, the data is in satisfactory agreement with the results of known works.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference14 articles.

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2. Theory of the steady laminar natural convection above a horizontal line source and a point heat source;Fujii;Int. J. of Heat and Mass Transfer,1963

3. Steady laminar natural convection plume above a horizontal line heat source;Gebhart;Int. J. of Heat and Mass Transfer,1970

4. Natural-convection heat transfer from plate with arbitrary inclination;Fujii;Int. J. of Heat and Mass Transfer,1972

5. The transition of plane plumes;Bill;Int. J. of Heat and Mass Transfer,1975

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