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27 Tyagi, M. and Acharya, S., “Large Eddy Simulation of Film Cooling Flow From an Inclined Cylindrical<br />

J<strong>et</strong>,” ASME J. Turbomach., Vol. 125, 2003, pp. 734–742.<br />

28 Renze, P., Meinke, M., and Schrö<strong>de</strong>r, W., “LES of Turbulent Mixing in Film Cooling Flows,” Conference<br />

on Turbulence and Interactions TI2006, May 29 - June 2, 2006, Porquerolles, France, 2006.<br />

29 Muldoon, F. and Acharya, S., “Analysis of k and epsilon Budg<strong>et</strong>s for Film Cooling Using Direct<br />

Numerical Simulation,” AIAA Journal, Vol. 44, No. 12, 2006, pp. 3010–3021.<br />

30 Men<strong>de</strong>z, S., Nicoud, F., and Poinsot, T., “Large-Eddy Simulations of a Turbulent Flow around a<br />

Multi-Perforated Plate,” Complex effects in LES, Vol. 56, 2006, pp. 289–303.<br />

31 Schönfeld, T. and Rudgyard, M., “Steady and unsteady flows <strong>simulation</strong>s using the hybrid flow solver<br />

AVBP,” AIAA J., Vol. 37, No. 11, 1999, pp. 1378–1385.<br />

32 Moureau, V., Lartigue, G., Sommerer, Y., Angelberger, C., Colin, O., and Poinsot, T., “Numerical<br />

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33 Schmitt, P., Poinsot, T., Schuermans, B., and Geigle, K., “Large-eddy <strong>simulation</strong> and experimental<br />

study of heat transfer, nitric oxi<strong>de</strong> emissions and combustion instability in a swirled turbulent high-pressure<br />

burner,” J. Fluid Mech., Vol. 570, 2007, pp. 17–46.<br />

34 Prière, C., Gicquel, L. Y. M., Kaufmann, A., Krebs, W., and Poinsot, T., “LES predictions of mixing<br />

enhancement for j<strong>et</strong>s in cross-flows,” J. of Turbulence, Vol. 5, 2004, pp. 005.<br />

35 Prière, C., Gicquel, L. Y. M., Gajan, P., Strzelecki, A., Poinsot, T., and Bérat, C., “Experimental<br />

and Numerical Studies of Dilution Systems for Low Emission Combustors,” AIAA J., Vol. 43, No. 8, 2005,<br />

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36 Nicoud, F. and Ducros, F., “Subgrid-scale stress mo<strong>de</strong>lling based on the square of the velocity gradient<br />

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37 Colin, O. and Rudgyard, M., “Development of high-or<strong>de</strong>r Taylor-Galerkin schemes for unsteady calculations,”<br />

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38 Smagorinsky, J., “General circulation experiments with the primitive equations: I. The basic experiment.”<br />

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39 Miron, P., Bérat, C., and Sabelnikov, V., “Effect of blowing rate on the film cooling coverage on<br />

a multi-holed plate: application on combustor walls,” Eighth International Conference on Heat Transfer.<br />

Lisbon, Portugal, 2004.<br />

40 Mayle, R. and Camarata, F., “Multihole cooling effectiveness and heat transfer,” Journal of Heat<br />

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41 Celik, I., Smirnov, A., and Smith, J., “Appropriate initial and boundary conditions for LES of a ship<br />

wake,” Proceedings of the 3rd ASME/JSME Joint Fluids Engineering Conference, Vol. FEDSM99-7851, San<br />

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42 Smirnov, A., Shi, S., and Celik, I., “Random Flow Generation Technique for Large Eddy Simulations<br />

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43 Riber, E., García, M., Moureau, V., Pitsch, H., Simonin, O., and Poinsot, T., “Evaluation of numerical<br />

strategies for LES of two-phase reacting flows,” Proceedings of the Summer Program, Center for Turbulence<br />

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44 Poinsot, T. and Lele, S. K., “Boundary conditions for direct <strong>simulation</strong>s of compressible viscous flows,”<br />

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