Exploiting the flexibility of unstructured grids for computing complex flow patterns more precisely

Author:

Rexroth C.-H,Giebert D,Koch R,Wittig S

Publisher

Elsevier BV

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics

Reference14 articles.

1. Beeck, A., Fottner, L., Benz, E., Wittig, S., 1992. The aerodynamic effect of coolant ejection in the leading edge region of a film-cooled turbine blade. In: Proceedings of 80th International Symposium on Heat Transfer and Cooling in Gas Turbines, Antalya, Turkey

2. Eaton, J.K., Johnston, J.P., 1980. Turbulent flow reattachment: An experimental study of the flow and structure behind a backward facing step. Stanford University Department of Mechanical Engineering, Report MD-39

3. Pressure based calculation procedure for viscous flows at all speeds in arbitrary configurations;Karki;AIAA Journal,1989

4. Kurreck, M., Wittig, S., 1994. Numerical simulation of combustor flows on parallel computers: Potential limitations and practical experience. ASME Paper 94-GT-404

5. The numerical computation of turbulent flows;Launder;Computer Methods in Applied Mechanics and Engineering,1974

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1. Heat transfer: a review of 1998 literature;International Journal of Heat and Mass Transfer;2001-08

2. AN INTERFACE-TRACKING CONTROL-VOLUME FINITE-ELEMENT METHOD FOR MELTING AND SOLIDIFICATION PROBLEMS- PART I: FORMULATION;Numerical Heat Transfer, Part B: Fundamentals;2001-02

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