Nichtisotherme ebene Freistrahlen unter Schwerkrafteinfluß |
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Authors: | Prof. Dr.-Ing. K. Gersten Dipl.-Ing. S. Schilawa Dipl.-Ing. F. K. V. Schulz-Hausmann |
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Affiliation: | 1. Institute für Thermo-und Fluiddynamik, Ruhr-Universit?t Bochum, Postfach 10 21 48, 4630, Bochum 1
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Abstract: | Higher-order boundary layer theory is used to study the behaviour of nonisothermal laminar and turbulent free jet flows. In addition to the Prandtl boundary layer equations, an equation is used to describe the equilibrium of forces normal to the flow direction. This equilibrium exists between the buoyancy forces caused by gravity and the centrifugal forces resulting from the curvature in the flow. The proper selection of reference values permits the characteristics of the jet flow to be expressed as universal functions in which only the initial jet orientation and the Prandtl number in the case of laminar flow are input parameters. When the volume flow is given in addition to the momentum and thermal energy, the characteristic parameter are the Archimedes number for turbulent flow and the modified Archimedes number for laminar flow. The jet flow is calculated using an integral method in which the eddy viscosity and the turbulent Prandtl number are given as functions of the local Archimedes number. Comparison of experimental data from the literature and from our laboratory on nonisothermal free jets with the theoretical results, show satisfactory agreement. The universal diagrams given in the paper are valid forall plane laminar (Pr=0.7) and turbulent nonisothermal jets. |
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