Crank-Nicholson Scheme of the Zeroth-Order Approximate Deconvolution Model of Turbulence Based On a Mixed Formulation

Author:

AĞGÜL Mustafa

Publisher

International Journal of Automotive Science and Technology

Subject

General Medicine

Reference16 articles.

1. [1] Sagaut, P. (2006). Large eddy simulation for incompressible flows. Scientific Computation, Springer Verlag.

2. [2] John, V. (2004). Large eddy simulation of turbulent incom-pressible flows. Lecture Notes in Computational Science and Engineering, Springer Verlag.

3. [3] Berselli, L.C. and Iliescu, T., and Layton, W.J. (2006). Mathematics of large eddy simulation of turbulent flows. Sci-entific Computation, Springer Verlag.

4. [4] Adams, N.A. and Stolz, S. (2001). Deconvolution methods for subgrid-scale approximation in large-eddy simulation. Modern Simulation Strategies for Turbulent Flow, B. Geurts (editor), pp. 21-41, R. T. Edwards.

5. [5] Adams, N.A., Stolz, S., Kleiser, L. (2006). The Approximate Deconvolution Model for Compressible Flows: Isotropic Turbulence and Shock-Boundary-Layer Interaction. Fluid Mechanics and Its Applications. Advances in LES of Com-plex Flows, vol. 65, 2006, pp. 33-47, Springer Netherlands.

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