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Prediction of turbulent flow and heat transfer in a radially rotating duct
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LDA investigation of the flow development through rotating U-duct
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The computation of flow development through stationary and rotating U-duct of strong curvature
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Analysis of streamline curvature effects on wall-bounded turbulent flows
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Computation of heat transfer in rotating two-pass square channels by a second-moment closure model
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Flow and heat transfer in a rotating square channel with 45 deg angled ribs by Reynolds stress turbulence model
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Recent progress in the computation of flow and heat transfer in internal cooling passages of turbine blades
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Bredberg, J."Prediction of Flow and Heat Transfer Inside Turbine Blades using EARSM, k-eps and k-omega Turbulence Models", Rept. 99/3, thesis of Lic. of Engng, Dept. of Thermo and Fluid Dynamics, Chalmers University of Technology., Göteborg, 1999.
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J. Bredberg, S-H. Peng and L. Davidson "On the Wall Boundary Condition for Computing Heat Transfer With k-omega Models", IMECE/ASME HTD-Vol. 365-5, Orlando, pp. 243-250, 2000.
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Bredberg, J.1
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14
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0017898071
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Ground effects on pressure fluctuations in the atmospheric boundary layer
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17
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Modeling strongly swirling recirculating jet flow with reynolds-stress transport closures
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Second-moment closure and its use in modeling turbulent industrial flows
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Transport equations in turbulence
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Heat transfer in rotating serpentine passages with smooth walls
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Wagner, J. H., Johnson, B. V., and Kopper, F. C., 1991, "Heat Transfer in Rotating Serpentine Passages With Smooth Walls," ASME J. Turbomach., 113, pp. 321-330.
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