Hybrid LES/RANS methods for the simulation of turbulent flows

Progress in Aerospace Sciences - Tập 44 Số 5 - Trang 349-377 - 2008
Jochen Fröhlich1, Dominic von Terzi1
1Institut für Strömungsmechanik, Technische Universität Dresden, George-Bähr-Strasse 3c, 01062 Dresden, Germany

Tóm tắt

Từ khóa


Tài liệu tham khảo

Casey M, Wintergerste T. Best practice guidelines. ERCOFTAC; 2000.

Rodi W, Bonnin JC, Buchal T, editors. ERCOFTAC workshop on data bases and testing of calculation methods for turbulent flows. University of Karlsruhe, Germany; April 1995.

1999

Jakirlić S, Jester-Zürker R, Tropea C, editors. 9th ERCOFTAC/IAHR/COST workshop on refined turbulence modelling, October 2–5, 2001, Darmstadt University of Technology; 2001.

Manceau R, Bonnet JP. Proceedings of the 10th ERCOFTAC/IAHR/QNET-CFD workshop on refined turbulence modelling, Laboratoire d’études Aerodynamiques, UMR CNRS 6609, Université de Poitiers, France; 2003.

Breuer, 1996, Flow around a surface mounted cubical obstacle: comparison of LES and RANS- results, vol. 53, 22

Hinterberger, 2004, LES of flow around the Ahmed body, vol. 19, 77

Ahmed SR, Ramm G. Some salient features of the time-averaged ground vehicle wake. SAE-Paper 840300, 1984.

Lienhart H, Becker, S. Flow and turbulence structure in the wake of a simplified car model. SAE Paper 2003-01-0656; 2003.

Chapman, 1979, Computational aerodynamics development and outlook, AIAA J, 17, 1293, 10.2514/3.61311

Spalart, 1997, Comments on the feasibility of LES for wings, and on a hybrid RANS/LES approach

Deardorff, 1970, A numerical study of three-dimensional turbulent channel flow at large Reynolds numbers, J Fluid Mech, 41, 453, 10.1017/S0022112070000691

Schumann, 1975, Subgrid scale model for finite difference simulations of turbulent flows in plane channels and annuli, J Comput Phys, 18, 376, 10.1016/0021-9991(75)90093-5

Werner, 1993, Large-eddy simulation of turbulent flow over and around a cube in a plane channel, 155

Wang, 2000, Computation of trailing-edge flow and noise using large-eddy simulation, AIAA J, 38, 2201, 10.2514/2.895

Wang, 2002, Dynamic wall modeling for large-eddy simulation of complex turbulent flows, Phys Fluids, 14, 2043, 10.1063/1.1476668

Cabot W. Large eddy simulations with wall models, In: Annual research briefs—1995, Center for Turbulence Research, Stanford University; 1995.

Balaras, 1995, Finite-difference computations of high Reynolds number flows using the dynamic subgrid-scale model, Theoret Comput Fluid Dyn, 7, 207, 10.1007/BF00312363

Piomelli, 1996, Large-eddy simulations: theory and applications, 269

Sagaut, 2006

Fröhlich, 2006

Speziale CG. A review of Reynolds stress models for turbulent shear flows. Report 95-15. ICASE; March 1995.

Pope, 2000

Rodi, 1993, On the simulation of turbulent flows past bluff bodies, J Wind Eng Ind Aerodyn, 46-47, 3, 10.1016/0167-6105(93)90111-Z

Hussain, 1986, Coherent structures and turbulence, J Fluid Mech, 173, 303, 10.1017/S0022112086001192

Wienken, 2006, A method to predict cavitation inception using large-eddy simulation and its application to the flow past a square cylinder, J Fluids Eng, 128, 316, 10.1115/1.2170132

Rodi, 1997, Status of large eddy simulation: results of a workshop, J Fluids Eng, 119, 248, 10.1115/1.2819128

Durbin, 1995, Separated flow computations with the k-ɛ-v2¯ model, AIAA J, 33, 659, 10.2514/3.12628

Schwarze R. Private communication; 2005.

Leonard, 1974, Energy cascade in large eddy simulations of turbulent fluid flows, Adv Geophys, 18A, 237

Fröhlich, 2002, Introduction to large-eddy simulation of turbulent flows, 267

Tennekes, 1972

Schumann U. Direct and large-eddy simulation of turbulence—summary of the state of the art. In: Introduction to turbulence modelling II, vol. 1993-02. VKI-lecture series, Brussels, Belgium; Von Kármán Institute for Fluid Dynamics; 1993.

Spalart PR. Young person's guide to detached eddy simulation grids. Technical Report NASA/CR-2001-211032, NASA Langley Research Center; 2001.

Scotti, 1993, Generalized smagorinsky model for anisotropic grids, Phys Fluids A, 5, 2208, 10.1063/1.858537

Ferziger, 1996, Large eddy simulation, 109

Drikakis, 2002, Special issue: very large eddy simulation, Int J Numer Methods Fluids, 39, 763, 10.1002/fld.328

Meri, 1999, Large-eddy simulation of non-equilibrium inflow conditions and of the spatial development of a confined plane jet with co-flowing streams, vol. 4, 197

Pourquié, 2002, A numerical wind tunnel experiment, vol. 65, 115

Mason, 1986, On the magnitude of the subgrid-scale eddy coefficient in large-eddy simulations of turbulent channel flow, J Fluid Mech, 162, 439, 10.1017/S0022112086002112

Geurts, 2002, A framework for predicting accuracy limitations in large-eddy simulations, Phys Fluids, 14, L41, 10.1063/1.1480830

Stolz, 1999, An approximate deconvolution procedure for large-eddy simulation, Phys Fluids, 11, 1699, 10.1063/1.869867

Stolz, 2005, High-pass filtered eddy-viscosity models for large-eddy simulation of transitional and turbulent flows, Phys Fluids, 17, 1, 10.1063/1.1923048

Boris, 1992, New insights into large eddy simulation, Fluid Dyn Res, 10, 199, 10.1016/0169-5983(92)90023-P

Adams, 2004, Implicit subgrid-scale modeling by adaptive deconvolution, J Comp Phys, 200, 412, 10.1016/j.jcp.2004.04.010

Sagaut, 2006

Deck, 2005, Zonal-detached-eddy simulation of the flow around a high-lift configuration, AIAA J, 43, 2372, 10.2514/1.16810

Nolin G, Mary I, Ta-Phuoc L, Hinterberger C, Fröhlich J. Coupling from LES to RANS using eddy-viscosity models. In: Direct and Large-Eddy Simulation VI, Poitiers, September 12–14, 2005, vol. VI. Dordrecht: Kluwer Academic Publishers; 2005.

Quéméré, 2002, Zonal multi-domain RANS/LES simulations of turbulent flows, Int J Numer Methods Fluids, 40, 903, 10.1002/fld.381

Speziale CG. Computing non-equilibrium turbulent flows with time-dependent RANS and VLES. In: 15th international conference on numerical methods in fluid dynamics, Monterey; 1996.

Speziale, 1998, Turbulence modeling for time-dependent RANS and VLES: a review, AIAA J, 36, 173, 10.2514/2.7499

Zhang HL, Bachman C, Fasel HF. Application of a new methodology for simulations of complex turbulent flows. AIAA Paper 2000-2535; 2000.

Fasel, 2002, A methodology for simulation of complex turbulent flows, J Fluids Eng, 124, 933, 10.1115/1.1517569

Fasel, 2006, A methodology for simulating compressible turbulent flows, J Appl Mech, 73, 405, 10.1115/1.2150231

Hussaini, 2006, Development of a continuous model for simulation of turbulent flows, J Appl Mech, 73, 441, 10.1115/1.2173006

von Terzi, 2005, High-accuracy DNS and LES of high Reynolds number supersonic base flows and passive control of the near wake

Speziale, 1998, A combined large-eddy simulation and time-dependent RANS capability for high-speed compressible flows, J Sci Comput, 13, 253, 10.1023/A:1023266932231

Sandberg, 2006, Investigation of supersonic wakes using conventional and hybrid turbulence models, AIAA J, 44, 2071, 10.2514/1.20379

Sivasubramanian J, Sandberg RD, von Terzi DA, Fasel HF. Numerical investigation of flow control mechanisms for drag reduction in supersonic base flows. AIAA Paper 2006–902; 2006.

Sivasubramanian, 2007, Numerical investigation of transitional supersonic base flows with flow control, J Spacecr Rockets, 44, 1021, 10.2514/1.28673

Fröhlich, 2001, Large eddy simulation of flow around circular cylinders on structured and unstructured grids, II, vol. 75, 231

Menter, 1994, Two-equation eddy viscosity turbulence models for engineering applications, AIAA J, 32, 1598, 10.2514/3.12149

Fan TC, Tian M, Edwards JR, Hassan HA, Baurle RA. Validation of a hybrid Reynolds-averaged/large-eddy simulation method for simulating cavity flameholder configurations. AIAA Paper 2001–2929; 2001.

Fan, 2004, Hybrid large-eddy/Reynolds-averaged Navier–Stokes simulations of shock-separated flows, J Spacecr Rockets, 41, 897, 10.2514/1.3735

Xiao, 2004, Blending functions in hybrid large eddy/Reynolds-averaged Navier–Stokes simulations, AIAA J, 42, 2508, 10.2514/1.2094

Baggett, 1998, On the feasibility of merging LES with RANS for the near-wall region of attached turbulent flows

Spalart, 2006, A new version of detached-eddy simulation resistant to ambiguous grid densities, Theoret Comput Fluid Dyn, 20, 181, 10.1007/s00162-006-0015-0

Spalart, 1994, A one-equation turbulence model for aerodynamic flows, La Rech Aèrosp, 1, 5

Shur, 1999, Detached-eddy simulation of an airfoil at high angle of attack, vol. 4, 669

Spalart PR. The uses of DES: natural, extended, and improper. Invited lecture at DESider workshop, 14–15 July 2005, Stockholm, Sweden; 2005.

Piomelli, 2003, The inner-outer layer interface in large-eddy simulations with wall-layer models, Int J Heat Fluid Flow, 24, 538, 10.1016/S0142-727X(03)00048-1

Strelets M. DES of massively separated flows. AIAA Paper 2001-0879; 2001.

Hedges, 2002, Detached-eddy simulations over a simplified landing gear, J Fluids Eng, 124, 413, 10.1115/1.1471532

Forsythe JR, Squires KD, Wurtzler KE, Spalart PR. DES of fighter aircraft at high alpha. AIAA Paper 2002-0591; 2002.

Squires KD, Forsythe JR, Morton SA, Blake DC, Serrano M, Wurtzler KE, et al. Analysis of full aircraft with massive separation using detached–eddy simulation. In: Proceedings of the high performance computing modernization programm 2002 users group conference, Austin, Texas; 2002.

Spalart, 2004, The status of detached-eddy simulation for bluff bodies

Nikitin, 2000, An approach to wall modelling in large-eddy simulations, Phys Fluids, 12, 1629, 10.1063/1.870414

Mellen CP, Fröhlich J, Rodi W. Large eddy simulation of the flow over periodic hills. In: Deville M, Owens R. editors. Proceedings of 16th IMACS world congress, pages CD–ROM, Lausanne, Switzerland; 2000.

Fröhlich, 2005, Highly-resolved large eddy simulations of separated flow in a channel with streamwise periodic constrictions, J Fluid Mech, 526, 19, 10.1017/S0022112004002812

Šarić, 2007, Evaluation of detached eddy simulations for predicting the flow over periodic hills, vol. 16, 133

Breuer M. New reference data for the hill flow test case. 〈http://www.hy.bv.tum.de/DFG-CNRS/〉; 2005.

Temmerman, 2003, Investigation of wall-function approximations and subgrid-scale models in large eddy simulation of separated flow in a channel with streamwise periodic constrictions, Int J Heat Fluid Flow, 24, 157, 10.1016/S0142-727X(02)00222-9

Cokljat D, Liu F. DES of turbulent flow over an airfoil at high incidence. AIAA Paper 2002–0590, In: 40th aerospace sciences meeting and exhibit, 14–17 January 2002, Reno Nevada; 2002.

Mellen CP, Fröhlich J, Rodi W. Lessons from the European LESFOIL project on LES of flow around an airfoil. AIAA Paper 2001-0111; 2001.

Davidson L, Cokljat D, Fröhlich J, Leschziner MA, Mellen C, Rodi W. editors. LESFOIL: large eddy simulation of flow around a high lift airfoil. In: Notes on numerical fluid mechanics. vol. 83. Berlin: Springer; 2003.

Schmidt, 2002, Detached eddy simulation of airfoil flow on semi-structured grids, 255

Fröhlich, 1998, Large eddy simulation of flow around circular cylinders on structured and unstructured grids, vol. 66, 319

Fröhlich, 2001, Transition in LES of bluff body flows and airfoils, vol. IV, 145

Breuer M, Jaffrézic B. An advanced hybrid LES-RANS method. ERCOFTAC Bull 2007;72:41–4 (see also Breuer M, Jaffrézic B, Arora K. Hybrid LES–RANS technique based on a one-equation near-wall model, Theoret Comput Fluid Dyn 2007).

Kniesner, 2007, Wall treatment in LES by RANS models: method development and application to aerodynamic flows and swirl combustors, ERCOFTAC Bull, 72, 33

Cabot, 1999, Approximate wall boundary conditions in the large-eddy simulation of high Reynolds number flow, Flow Turbulence Combustion, 63, 269, 10.1023/A:1009958917113

Piomelli, 2002, Wall-layer models for large-eddy simulation, Ann Rev Fluid Mech, 34, 349, 10.1146/annurev.fluid.34.082901.144919

Balaras, 1996, Two-layer approximate boundary conditions for large-eddy simulations, AIAA J, 34, 1111, 10.2514/3.13200

Davidson, 2003, Hybrid LES–RANS modelling: a one-equation sgs model combined with a k-ω model for predicting recirculating flows, Int J Numer Methods Fluids, 43, 1003, 10.1002/fld.512

Temmerman, 2005, A hybrid two-layer URANS–LES approach for large eddy simulation at high Reynolds numbers, Int J Heat Fluid Flow, 26, 173, 10.1016/j.ijheatfluidflow.2004.07.006

Yoshizawa, 1985, A statistically-derived subgrid-scale kinetic energy model for the large-eddy simulation of turbulent flows, J Phys Soc Jpn, 54, 2834, 10.1143/JPSJ.54.2834

Hamba, 2003, A hybrid RANS/LES simulation of turbulent channel flow, Theoret Comput Fluid Dyn, 16, 387, 10.1007/s00162-003-0089-x

Davidson, 2005, Hybrid LES-RANS: computation of the flow around a three-dimensional hill, vol. 6

Yakhot, 1986, Renormalization group analysis of turbulence. 1. Basic theory, J Sci Comput, 1, 3, 10.1007/BF01061452

DeLanghe C, Merci B, Dick E. Very large eddy simulation and RNG turbulence models. AIAA Paper 2001–3041; 2001.

DeLanghe, 2005, Hybrid RANS/LES modelling with an approximate renormalization group. I: model development, J Turbulence, 6, 1

DeLanghe, 2005, Hybrid RANS/LES modelling with an approximate renormalization group II: applications, J Turbulence, 6, 1

Batten P, Goldberg U, Chakravarthy S. Sub-grid turbulence modelling for unsteady flow with acoustic resonance. AIAA Paper 2000–0473; 2000.

Batten, 2004, Interfacing statistical turbulence closures with large-eddy simulation, AIAA J, 42, 485, 10.2514/1.3496

Batten P, Goldberg U, Chakravarthy S. LNS—an approach towards embedded LES, AIAA Paper 2002–0427; 2002.

Sergent E. Vers une méthodologie de couplage entre la simulation des grandes échelles et les modèles statistiques. PhD thesis, Ecole Centrale de Lyon; 2002.

Sergent E, Bertoglio JP, Laurence D. Coupling between large-eddy simulation and Reynolds-averaged Navier–Stokes. In: Presentation at 3rd international workshop on direct and large eddy simulation, Munich, no written contribution; 2003.

Mathey, 2003, Specification of LES inlet boundary condition using vortex method, vol. 4

Mathey F, Cokljat D. Zonal multi-domain RANS/LES simulation of airflow over the Ahmed body. In: Rodi W, Mulas M, editors. Engineering turbulence modelling and experiments. vol. 6. 2005; p. 647–56.

Grinstein, 2004, Special section: boundary conditions for LES, AIAA J, 42, 437

Lefebvre de Plinval-Salgues H. Implementation and evaluation of a method to generate turbulent inlet boundary conditions for a large eddy simulation. Internal Report, Institute for Hydromechanics, University of Karlsruhe; 2004.

von Terzi, 2008, Scrutinizing velocity and pressure coupling conditions for LES with downstream RANS calculations, vol. 97, 107

Schlüter, 2005, A framework for coupling Reynolds-averaged with large-eddy simulations for gas turbine applications, J Fluids Eng, 127, 806, 10.1115/1.1994877

von Terzi, 2007, Coupling conditions for LES with downstream RANS for prediction of incompressible turbulent flows, vol. 2, 765

von Terzi DA, Fröhlich J. Zonal coupling of LES with downstream RANS calculations; 2008, in preparation.

Moser, 1999, Direct numerical simulation of turbulent channel flow up to Reτ=590, Phys Fluids, 11, 943, 10.1063/1.869966

Girimaji, 2006, Partially-averaged Navier–Stokes model for turbulence: a Reynolds-averaged Navier–Stokes to direct numerical simulation bridging method, J Appl Mech, 73, 413, 10.1115/1.2151207

Rotta, 1972

Menter, 2006, Re-visiting the turbulent scale equation, vol. 129, 279

Menter FR, Kuntz M, Bender R. A scale-adaptive simulation model for turbulent flow predictions. AIAA Paper 2003-0767; 2003.

Egorov, 2008, Development and application of SST–SAS turbulence model in the DESIDER project, vol. 97, 261

Menter, 2006, Steady and unsteady flow modelling using the k-kl model, vol. 5, 403

Menter FR, Egorov Y. A scale-adaptive simulation model using two-equation models. AIAA Paper 2005-1095; 2005.

Menter, 2006, SAS turbulence modeling of technical flows, 687

Davidson L. Evaluation of the SST–SAS model: channel flow, asymmetric diffuser and axis-symmetric hill. In: European conference on computational fluid dynamics: ECCOMAS CFD; 2006.

Davidson L, Dahlström S. Hybrid LES–RANS: computation of the flow around a three-dimensional hill. In: Rodi W, Mulas M, editors. Engineering turbulence modelling and measurements. vol. 6. 2005; p. 319–28.

Medic G, Daeninck G, Templeton JA, Kalitzin G. A framework for near-wall RANS/LES coupling. In: Annual research briefs—2005, Center for Turbulence Research, Stanford University; 2005.

Medic, 2006, A formulation for near-wall RANS/LES coupling, Int J Eng Sci, 44, 1099, 10.1016/j.ijengsci.2006.07.003

Brandt T, Hellsten A, von Terzi DA, Fröhlich J. Assessment of a hybrid LES–RANS concept based on eddy-viscosity reduction using resolved Reynolds stresses. In: Proceedings of the 5th congress on computational methods in applied sciences and engineering, ECCOMAS 2008, June 30–July 5, Venice, Italy; 2008, to appear.