Low Reynolds numberk—ε modelling with the aid of direct simulation data

Author:

Rodi W.,Mansour N. N.

Abstract

The constantCμand the near-wall damping functionfμin the eddy-viscosity relation of thek–ε model are evaluated from direct numerical simulation (DNS) data for developed channel and boundary-layer flow, each at two Reynolds numbers. Various existingfμmodel functions are compared with the DNS data, and a new function is fitted to the high-Reynolds-number channel flow data. The ε-budget is computed for the fully developed channel flow. The relative magnitude of the terms in the ε-equation is analysed with the aid of scaling arguments, and the parameter governing this magnitude is established. Models for the sum of all source and sink terms in the ε-equation are tested against the DNS data, and an improved model is proposed.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference21 articles.

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2. Launder, B. E. 1986 Low-Reynolds-number turbulence near walls. Rep. TFD/86/4.UMIST,Manchester.

3. Kim, J. , Moin, P. & Moser, R. 1987 Turbulence statistics in fully developed channel flow at low Reynolds number.J. Fluid Mech. 177,133–166.

4. Rodi, W. 1971 On the equation governing the rate of turbulent energy dissipation. Rep. TM/TN/A/14,Imperial College of Science and Technology, Department of Mechanical Engineering,London.

5. Mansour, N. N. , Kim, J. & Moin, P. 1988.Reynolds-stress and dissipation rate budgets in a turbulent channel flow.J. Fluid Mech. 194,15–44.

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