NASA NTRS · 19970015305
Numerical Simulation of Turbulent Jets with Rectangular Cross-Section
Abstract
Three-dimensional turbulent jets with rectangular cross-section are simulated with a finite-difference numerical method. The full Navier-Stokes equations are solved at low Reynolds numbers, whereas at the high Reynolds numbers filtered forms of the equations are solved along with a sub-grid scale model to approximate effects of the unresolved scales. A 2-N storage, third-order Runge-Kutta scheme is used for temporal discretization and a fourth-order compact scheme is used for spatial discretization. Computations are performed for different inlet conditions which represent different types of jet forcing. The phenomenon of axis-switching is observed, and it is confirmed that this is based on self-induction of the vorticity field. Budgets of the mean streamwise velocity show that convection is balanced by gradients of the Reynolds stresses and the pressure.
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Wilson, Robert V., Demuren, Ayodeji O.. 1997-01-01. Numerical Simulation of Turbulent Jets with Rectangular Cross-Section. https://ntrs.nasa.gov/citations/19970015305
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