The computation of turbulent flow through stationary and rotating U-bends with rib-roughened surfaces

Author:

Iacovides H.

Publisher

Wiley

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials,Computational Mechanics

Reference15 articles.

1. ‘Effects of Coriolis force on the turbulent boundary layer in rotating fluid machines’, Report No. 74, MIT Gas Turbine Laboratory, 1964.

2. , and , ‘Turbulent momentum and heat transport in flow through a 180° bend of square cross-section’, Proc. 4th Symp on Turbulent Shear Flows, Karlsruhe, 1983, pp. 620-625.

3. Numerical Computation of Turbulent Flow in a Square-Sectioned 180 Deg Bend

4. and , ‘The prediction of turbulent flow and heat transfer in a tight square cross-sectioned 180° bend’, Proc. 8th Int. Conf. on Numerical Methods in Laminar and Turbulent Flows, Swansea, 1993.

5. and , ‘Comparison of heat transfer measurements with computations for turbulent flow around a 180° bend’, ASME Paper 91-GT-2, Int. Gas Turbine and Aero Congress, Orlando FL, 1991.

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1. Computation of flow and heat transfer through channels with periodic dimple/protrusion walls using low-Reynolds number turbulence models;International Journal of Numerical Methods for Heat & Fluid Flow;2019-03-04

2. Characterization of Turbulent Heat Transfer in Ribbed Pipe Flow;Journal of Heat Transfer;2016-01-05

3. A numerical investigation of heat transfer in a smooth bend part of a U-duct;International Journal of Numerical Methods for Heat & Fluid Flow;2013-12-20

4. Numerical analysis of turbulent flow in a rotating U-bend with roughened walls;International Journal of Computational Fluid Dynamics;2010-09

5. On numerical simulations of flow and heat transfer of the bend part of a U-duct;Advanced Computational Methods and Experiments in Heat Transfer XI;2010-06-28

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