PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

Large Eddy Simulation of transitional flows in rotor/stator cavity

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An algorithm for the Large Eddy Simulation, with subgrid modelling based on the spectral Chebyshev-Fourier approximation, is developed for the investigation of 3D turbulent and transitional non-isothermal flows within a rotor/stator cavity. In LES we use a version of the dynamic Smagorinsky eddy viscosity model in which the Smagorinsky coefficient at a given position x depends on the history of the flow along the fluid particle pathline. Computations are based on the efficient pseudo-spectral Chebyshev-Fourier method (S. HUGUES, A. RANDRIAMAMPIANINA, An improved projection scheme applied to pseudospectral methods for the incompressible Navier-Stokes equations, Int. J. Numer. Methods Fluids, 28, 501, 1998). To demonstrate the effectiveness of the proposed algorithm, computations were performed for the cavity of aspect ratio L = 5 and results were compared favorably with the experimental data taken from literature.
Rocznik
Strony
95--120
Opis fizyczny
Bibliogr. 45 poz.
Twórcy
autor
Bibliografia
  • 1. E. SEVER AC, E. SERRE, A spectral viscosity LES for the simulation of turbulent flows within rotating cavities, J. Comp. Phys., 226, 2, 1234-1255, 2007.
  • 2. S. HUGUES, A. RANDRIAMAMPIANINA, An improved projection scheme applied to pseu-dospectral methods for the incompressible Navier-Stokes equations, Int. J. Nurner. Methods Fluids, 28, 501, 1998.
  • 3. I. RASPO, S. HUGUES, E. SERRE, A. RANDRIAMAMPIANINA, P. BONTOUX, Spectral projection methods for the simulation of complex three-dimensional rotating flows, Computers and Fluids, 31, 47, 745 767, 2002.
  • 4. E. SERRE, J.P. PULICANI, A three-dimensional pseudospectral method for rotating flows in a cylinder, Computers & Fluids, 30, 491, 2001.
  • 5. E. SEVERAC, S. PONCET, E. SERRE, Large eddy simulations and measurements of turbulent enclosed rotor-stator flows, Phys. Fluids, 19, 085113, 2007.
  • 6. S.P. WILKINSON, M.R. MALIK, Stability experiments in the flow over a rotating disk, AIAA J., 23, 4, 588-595, 1985.
  • 7. R. KOBAYASHi, Y. KOHAMA, M. KUROSAWA, Bowidary layer transition on a rotating cone in axial flow, J. Fluid Mech., 127, 341-352, 1983.
  • 8. W.S. SARIC, H.L. REED, E.B. WHITE, Stability and transition of three-dimensional boundary layer, Annular Rev. Fluid Mech., 35, 413-440, 2003.
  • 9. H. LITTELL, J. EATON, Turbulence characteristics of the boundary layer on a rotating disk, J. Fluid Mech., 266, 175-207, 1994.
  • 10. H.S. KANG, H. CHOI, J.Y. Yoo, On the modification of the near-wall coherent structure in a three-dimensional turbulent boundary layer on a free rotating disk, Phys. of Fluids, 10, 2315, 1998.
  • 11. E. TULISZKA-SZNITKO, C. SoONG, Instability of non-isothermal flow between coaxial rotating disks, Proceedings of European Congress on Computational Methods in Applied Sciences and Engineering, Barcelona 2000.
  • 12. M. ITOH, On the instability of the flow between coaxial rotating disks, Boundary Layer Stability and Transition to Turbulence, ASME FED, 114, 83, 1991.
  • 13. A. RANDRIAMAMPIANINA, P. BONTOUX, B. Roux, Ecoulements induits par la force grav-ique dans une cavite cylindrique en rotation, Int. J. Heat Mass Transf., 30, 7, 1275-1292, 1987.
  • 14. L. ELENA, R. SCHIESTEL, Turbulence modeling of rotating confined flows, Int. J. of Heat and Fluid Flow, 17, 3, 283-289, 1996.
  • 15. J.W. DAILY, R.E. NECE, Chamber dimension effect on induced flow and friction resistance of enclosed rotating disk, ASME J., Basic Eng., 82, 217-232, 1960.
  • 16. J.M. OWEN, R.H. ROGERS, Heat transfer in rotating disc systems, W.D. MORRIS [Ed.], Wiley, Taunton, Somerset, England, 1989.
  • 17. J.M. OWEN, R.H. ROGERS, Heat transfer in rotating disc systems, W.D. MORRIS, Wiley, Taunton, Somerset, England, 1995.
  • 18. L. SCHOUVEILER, P. LE GAL, P. CHAUVE, Instabilities of the flow between a rotating and stationary disk, J. Fluid Mech., 443, 329-350, 2002.
  • 19. G. GAUTHIER, P. GONDRET, F. MOISY, M. RABAUD, Instabilities in the flow between co-and counter-rotating disks, J. Fluid Mech., 473, 1-21, 2002.
  • 20. F. MOISY, O. DOARE, T. PASUTTO, O. DAUBE, M. RABAUD, Experimental and numerical study of the shear layer instability between two counter-rotating disks, J. Fluid Mech., 507, 175-203, 2004.
  • 21. S. PONCET, M. CHAUVE, R. SCHIESTEL, Batchelor versus Stew arts on flow structures in a rotor-stator cavity with throughflow, Phys. Fluids, 17, 075110, 2005.
  • 22. S. CHEAH, H. IACOVIDES, D. JACKSON, H. Ji, B. LAUNDER, Experimental investigation of enclosed rotor-stator disk flows, Exp. Therm. Fluid Sci., 9, 45, 1994.
  • 23. M. ITOH, Y. YAMADA, S. IMAO, M. GONDA, Experiments on turbulent flow due to an enclosed rotating disk, in Engineering Turbulence Modeling and Experiments, W. RODI and E. GANIC [Eds.], Elsevier, 659 668, 1990.
  • 24. M. ITOH, Y. YAMADA, S. IMAO, M. GONDA, Experiments on turbulent flow due to an enclosed rotating disk, Exp. Term. Fluid, 9, 445, 1994.
  • 25. J. LOPEZ, J. HART, F. MARQUES, S. KITTELMAN, J. SHEN, Instability and mode interactions in a differentially driven rotating cylinder, J. Fluid Mech., 462, 383-0409, 2002.
  • 26. E. SERRE, E. CRESPO DEL ARCO, P. BONTOUX, Annular and spiral patters inflow between rotating and stationary disks, J. Fluid Mech., 434, 65-100, 2001.
  • 27. E. SERRE, E. TULISZKA-SZNITKO, P. BONTOUX, Coupled numerical and theoretical study of the transition flow between a rotating and stationary disk, Phys. of Fluids, 16, 3, 688-707, 2004.
  • 28. J.J. HEALEY, Enhancing the absolute instability of a boundary layer by adding a far-away plate, J. Fluid. Mech., 579, 29-61, 2000.
  • 29. A. RANDRIAMAMPIANINA, L. ELENA, J.P. FONTAINE, R. SCHIESTEL, Numerical prediction of laminar, transitional and turbulent flows in shrouded rotor-stator systems. Physics of Fluids, 9, 6, 1696 1713, 1997.
  • 30. A. RANDRIAMAMPIANINA, S. PONCET, Turbulence characteristics of the Bodewadat layer in a large enclosed rotor-stator system, Phys. Fluids, 18, 055104, 2006.
  • 31. E. TuuszKA-SzNiTKO, E. StlRRE, P. BoNTOUX, On the nature of the boundary layers instabilities in a flow between a rotating and a stationary disc, C.R. Mecanique, 30, 90—99, 2002.
  • 32. E. TULISZKA-SZNITKO, A. ZIELINSKI, DNS/LES of transitional flow in rotating cavity, Int. J. Transport Phenomena, 10, 3, 223 234, 2008.
  • 33. E. TULISZKA-SZNITKO, A. ZIELINSKI, W. MAJCHROWSKI, LES and DNS of the non-isothermal transitional flow in rotating cavity, accepted in Int. J. of Heat and Fluid Flow, 2009.
  • 34. E. CRESPO DEL ARCO, P. MAUBERT, A. RANDRIAMAMPIANINA, P. BONTOUX, Spatio-temporal behavior in a rotating annulus with a source sink flow, J. Fluid Mech., 328, 271 296, 1996.
  • 35. O. CZARNY, H. IACOVIDES, B.E. LAUNDER, Processing vortex structure in turbulent flow within rotor-stator disc cavities, FTAC, 69, 51 61, 2002.
  • 36. M. LYGREN, H.I. ANDERSON, Turbulent flow between a rotating and a stationary disk, J. Fluid Mech., 426, 297, 2001.
  • 37. R. JACQUES, P. LE QUERE, O. DAUBE, Axisymmetric numerical simulations of turbulent flow in rotor/stator enclosure, Int. J. of Heat and Fluid Flow, 23, 381 397, 2002.
  • 38. X. Wu, K.D. SQUIRES, Prediction and investigation of the turbulent flow over a rotating disk, J. Fluid Mech., 418, 231 264, 2000.
  • 39. H.I. ANDERSON, M. LYGREN, LES of open rotor-stator flow, Int. J. Heat Fluid Flow, 27, 4, 551 557, 2006.
  • 40. M. LYGREN, H.I. ANDERSON, Large eddy simulations of the turbulent flow between a rotating and a stationary disk, ZAMP, 55, 268, 2004.
  • 41. C. MENEVEAU, T.S. LUND, W.H. CABOT, A Lagrangian dynamic subgnd-scale model of turbulence, J. Fluid Mech., 319, 353 385, 1996.
  • 42. R. PASQUETTI, Spectral vanishing viscosity method for large eddy simulation of turbulent flow, J. Sci. Corrip., 27, 13, 365 375, 2006.
  • 43. D. LILLY, A proposed modification of the Germano subgrid-scale closure method, Phys. Fluids A, 4, 3, 633 635, 1992.
  • 44. M. GERMANO, U. PIOMELLI, P. MOIN, W. CABOT, A dynamic sub-grid eddy viscosity model, Phys. of Fluids A, 3 (7), 1760 1765, 1991.
  • 45. J.M. VANEL, R. PEYRET, P. BONTOUX, A pseudospectral solution of vorticity-stream function equations using the influence matrix technique, Num. Meth. Fluid Dyn., II, Clarendon, ed. Morton & Baines, 463 475, 1986.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT7-0016-0001
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.