2005Unpublished venueRequires access

Numerical Prediction Of Turbulent Oscillating Flow In A Circular Pipe

W. J. Koehler, Suhas V. Patankar, W.E. Ibele

Open publisher page 11 citations

Abstract

Turbulence models are reviewed and discussed with respect to their applicability in oscillating flow modeling. The Larn-Brernhorst form of the low-Reynolds number k-/spl epsilon/ turbulence model is chosen for oscillating flow modeling. Computations of oscillating flow in a finite pipe are compared with experimental data. While deficiencies of the turbulence model are identified, the overall agreement is shown to be very satisfactory. The instantaneous friction coefficients for fully developed flow are documented. The use of an effective Valensi number is proposed.

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What this paper is about

Turbulence models are reviewed and discussed with respect to their applicability in oscillating flow modeling. The Larn-Brernhorst form of the low-Reynolds number k-/spl epsilon/ turbulence model is chosen for oscillating flow modeling. Computations of oscillating flow in a finite pipe are compared with experimental data. While deficiencies of the turbulence model are identified, the overall agreement is shown to be very satisfactory. The instantaneous friction coefficients for fully developed flow are documented. The use of an effective Valensi number is proposed.

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Available abstract

Turbulence models are reviewed and discussed with respect to their applicability in oscillating flow modeling. The Larn-Brernhorst form of the low-Reynolds number k-/spl epsilon/ turbulence model is chosen for oscillating flow modeling. Computations of oscillating flow in a finite pipe are compared with experimental data. While deficiencies of the turbulence model are identified, the overall agreement is shown to be very satisfactory. The instantaneous friction coefficients for fully developed flow are documented. The use of an effective Valensi number is proposed.

Key concepts: Turbulence, Mechanics, Flow (mathematics), Pipe flow, Physics, Aerospace engineering, Geology, Engineering

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