3D Numerical Simulation of Flow Perpendicular to One Face of a Cube in a Straight Rectangular Duct

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In this paper, a numerical flow model combining with the Realizable k–ε turbulent model for compressible viscous fluid is presented for the simulation the flow perpendicular to one face of a cube in a straight rectangular duct; and the equations are solved with the finite volume method. The computed velocity field distribution shows that the proposed model is reliable and can be applied to the numerical simulation of turbulence flow in ducts.

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2681-2683

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October 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] A.M. Davies, J.E. Jones. On the numerical solution of the turbulence energy equations for wave and tidal flows, Int. J. Num. Met. Fluids 12 (1991) 17–41.

DOI: 10.1002/fld.1650120103

Google Scholar

[2] W. Rodi, Turbulence Models and their Application in Hydraulics. A State of the Art Review, third ed., IAHR, 1993, 104p.

Google Scholar

[3] CHEN Qun. THREE2DIMENSIONAL TURBULENCE NUMERICAL SIMULATION OF A STEPPED SPILLWAY OVERFLOWX. Journal of Hydrodynamics, 1 (2004), 74 – 79.

Google Scholar

[4] C.W. Li, B. Zhu. A sigma coordinate 3D k–ε model for turbulent free surface flow over a submerged structure. Applied Mathematical Modelling 26 (2002) 1139–1150.

DOI: 10.1016/s0307-904x(02)00081-1

Google Scholar

[5] Jaw-Yen Yang, Shih-Chang Yang, Implicit Weighted ENO Schemes for the Three-Dimensional Incompressible Navier–Stokes Equations. JOURNAL OF COMPUTATIONAL PHYSICS 146(1998), 464–487.

DOI: 10.1006/jcph.1998.6062

Google Scholar