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Articles

Influence of Turbulent Inlet Boundary Condition on Large Eddy Simulation Over a Flat Plate Boundary Layer

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Pages 232-259 | Received 26 Nov 2021, Accepted 27 May 2022, Published online: 11 Jul 2022

References

  • Aboshosha, H., A. Elshaer, G. T. Bitsuamlak, and A. El Damatty. 2015. “Consistent Inflow Turbulence Generator for LES Evaluation of Wind-Induced Responses for Tall Buildings.” Journal of Wind Engineering and Industrial Aerodynamics 142: 198–216.
  • Allegrini, Jonas, and Jan Carmeliet. 2017. “Evaluation of the Filtered Noise Turbulent Inflow Generation Method.” Flow, Turbulence and Combustion 98 (4): 1087–1115.
  • Araya, G., L. Castillo, C. Meneveau, and K. Jansen. 2011. “A Dynamic Multi-Scale Approach for Turbulent Inflow Boundary Conditions in Spatially Developing Flows.” Journal of Fluid Mechanics 670: 581–605.
  • Blackman, K., L. Perret, I. Calmet, and C. Rivet. 2017. “Turbulent Kinetic Energy Budget in the Boundary Layer Developing Over an Urban-Like Rough Wall Using PIV.” Physics of Fluids 29 (8): 085113.
  • Castro, I. P., H. Cheng, and R. Reynolds. 2006. “Turbulence Over Urban-Type Roughness: Deductions from Wind-Tunnel Measurements.” Boundary-Layer Meteorology 118 (1): 109–131.
  • Castro, H. G., R. R. Paz, and V. E. Sonzogni. 2011. “Generation of Turbulent Inlet Velocity Conditions.” Mecánica Computacional 30 (29): 2275–2288.
  • Cheng, W., D. I. Pullin, and R. Samtaney. 2015. “Large-eddy Simulation of Separation and Reattachment of a Flat Plate Turbulent Boundary Layer.” Journal of Fluid Mechanics 785: 78–108.
  • Conan, Boris. 2012. “Wind resource accessment in complex terrain by wind tunnel modelling,”.
  • Dhamankar, N. S., G. A. Blaisdell, and A. S. Lyrintzis. 2018. “Overview of Turbulent Inflow Boundary Conditions for Large-Eddy Simulations.” AIAA Journal 56 (4): 1317–1334.
  • di Mare, L., M. Klein, W. P. Jones, and J. Janicka. 2006. “Synthetic Turbulence Inflow Conditions for Large-Eddy Simulation.” Physics of Fluids 18 (2): 025107.
  • Druault, Philippe, S. Lardeau, J.-P. Bonnet, F. Coiffet, J. Delville, E. Lamballais, J.-F. Largeau, and L. Perret. 2004. “Generation of Three-Dimensional Turbulent Inlet Conditions for Large-Eddy Simulation.” AIAA Journal 42 (3): 447–456.
  • Fluent Inc. 2006. FLUENT 6.3 User’s Guide.
  • Fukami, K., Y. Nabae, K. Kawai, and K. Fukagata. 2019. “Synthetic Turbulent Inflow Generator Using Machine Learning.” Physical Review Fluids 4 (6): 1–26.
  • Hepffner, J., Y. Naka, and K. Fukagata. 2011. “Realizing Turbulent Statistics.” Journal of Fluid Mechanics 676: 54–80.
  • Huang, S. H., Q. S. Li, and J. R. Wu. 2010. “A General Inflow Turbulence Generator for Large Eddy Simulation.” Journal of Wind Engineering and Industrial Aerodynamics 98 (10–11): 600–617.
  • Hunt, J. C. R., A. A. Wray, and P. Moin. 1988. “Eddies, Streams, and Convergence Zones in Turbulent Flows.” Cent. Turbul. Res. Proc. Summer Progr. 1970: 193–208.
  • Iwamoto, K. 2002. “Database for fully developed channel flow,” THTLAB Internal Report (ILR- 0201).
  • Jarrin, N., S. Benhamadouche, D. Laurence, and R. Prosser. 2006. “A Synthetic-Eddy-Method for Generating Inflow Conditions for Large-Eddy Simulations.” International Journal of Heat and Fluid Flow 27 (4): 585–593.
  • Kim, Y., I. P. Castro, and Z. T. Xie. 2013. “Divergence-free Turbulence Inflow Conditions for Large-Eddy Simulations with Incompressible Flow Solvers.” Computers & Fluids 84: 56–68.
  • Klein, M., A. Sadiki, and J. Janicka. 2003. “A Digital Filter Based Generation of Inflow Data for Spatially Developing Direct Numerical or Large Eddy Simulations.” Journal of Computational Physics 186 (2): 652–665.
  • Kraichnan, R. H. 1970. “Diffusion by a Random Velocity Field.” Physics of Fluids 13 (1): 22–31.
  • Kröger, H., and N. Kornev. 2018. “Generation of Divergence Free Synthetic Inflow Turbulence with Arbitrary Anisotropy.” Computers & Fluids 165: 78–88.
  • Lamberti, G., C. García-Sánchez, J. Sousa, and C. Gorlé. 2018. “Optimizing Turbulent Inflow Conditions for Large-Eddy Simulations of the Atmospheric Boundary Layer.” Journal of Wind Engineering and Industrial Aerodynamics 177: 32–44.
  • Lee, Y. T., L. K. Gutti, and H. C. Lim. 2021. “Numerical Study of the Influence of the Inlet Turbulence Length Scale on the Turbulent Boundary Layer.” Applied Science 11 (11): 5177. doi:https://doi.org/10.3390/app11115177.
  • Li, N., E. Balaras, and U. Piomelli. 2000. “Inflow Conditions for Large-Eddy Simulations of Mixing Layers.” Physics of Fluids 12 (4): 935–938.
  • Liu, K., and R. H. Pletcher. 2006. “Inflow Conditions for the Large Eddy Simulation of Turbulent Boundary Layers: A Dynamic Recycling Procedure.” Journal of Computational Physics 219 (1): 1–6.
  • Lund, T. S., X. Wu, and K. D. Squires. 1998. “Generation of Turbulent Inflow Data for Spatially-Developing Boundary Layer Simulations.” Journal of Computational Physics 140 (2): 233–258.
  • Luo, Y., H. Liu, Q. Huang, H. Xue, and K. Lin. 2017. “A Multi-Scale Synthetic Eddy Method for Generating Inflow Data for LES.” Computers & Fluids 156: 103–112.
  • McMullan, W. A., S. Gao, and C. M. Coats. 2009. “The Effect of Inflow Conditions on the Transition to Turbulence in Large Eddy Simulations of Spatially Developing Mixing Layers.” International Journal of Heat and Fluid Flow 30 (6): 1054–1066.
  • Montorfano, A., F. Piscaglia, and G. Ferrari. 2013. “Inlet Boundary Conditions for Incompressible LES: A Comparative Study.” Mathematical and Computer Modelling 57 (7–8): 1640–1647.
  • Pamiès, M., PÉ Weiss, E. Garnier, S. Deck, and P. Sagaut. 2009. “Generation of Synthetic Turbulent Inflow Data for Large Eddy Simulation of Spatially Evolving Wall-Bounded Flows.” Physics of Fluids 21 (4): 045103.
  • Patruno, L., and M. Ricci. 2017. “On the Generation of Synthetic Divergence-Free Homogeneous Anisotropic Turbulence.” Computer Methods in Applied Mechanics and Engineering 315: 396–417.
  • Perret, L., J. Delville, R. Manceau, and J. P. Bonnet. 2008. “Turbulent Inflow Conditions for Large-Eddy Simulation Based on low-Order Empirical Model.” Physics of Fluids 20 (7): 075107.
  • Philipp, S. 2011. “Boundary Layer DNS/LES Data.” The 7th International symposium on turbulence and shear flow phenomena. [Online]. Available: https://www.mech.kth.se/∼pschlatt/DATA/.
  • Poletto, R., T. Craft, and A. Revell. 2013. ““A new Divergence Free Synthetic Eddy Method for the Reproduction of Inlet Flow Conditions for les.” Flow, Turbulence and Combustion 91 (3): 519–539.
  • Pope, S. 2001. “Turbulent flows,”.
  • Rai, M. M., and M. Parviz. 1993. “Direct Numerical Simulation of Transition and Turbulence in a Spatially Evolving Boundary Layer.” Journal of Computational Physics 109 (2): 169–192.
  • Roach, P., and D. Brierlay. 1989. The Influence of a Turbulent Freestream on Zero Pressure Gradient Transitional Boundary Layer Development Including the Condition Test Cases T3A and T3B. Lausanne: Cambridge University Press, pp. 319–347.
  • Schlatter, P., and R. Örlü. 2012. “Turbulent Boundary Layers at Moderate Reynolds Numbers: Inflow Length and Tripping Effects.” Journal of Fluid Mechanics 710: 5–34.
  • Shahinfar, S., J. H. M. Fransson, S. S. Sattarzadeh, and A. Talamelli. 2013. “Scaling of Streamwise Boundary Layer Streaks and Their Ability to Reduce Skin-Friction Drag.” Journal of Fluid Mechanics 733: 1–32.
  • Smirnov, A., S. Shi, and I. Celik. 2001. “Random Flow Generation Technique for Large Eddy Simulations and Particle-Dynamics Modeling.” Journal of Fluid Mechanics 123 (2): 359–371.
  • Source, O., and C. F. D. Consulting. 2014. “OpenFoam Utilities,” no. February.
  • Spalart, P. R. 1988. “Direct Simulation of a Turbulent Boundary Layer up to Rθ =  1410.” Journal of Fluid Mechanics 187: 61–98.
  • Tabor, G. R., and M. H. Baba-Ahmadi. 2010. “Inlet Conditions for Large Eddy Simulation: A Review.” Computers & Fluids 39 (4): 553–567.
  • Tyacke, J. C., and P. G. Tucker. 2015. “Future use of Large Eddy Simulation in Aero-Engines.” Journal of Turbomachinery 137 (8): 1–16.
  • Vasaturo, R., I. Kalkman, B. Blocken, and P. J. V. van Wesemael. 2018. “Large Eddy Simulation of the Neutral Atmospheric Boundary Layer: Performance Evaluation of Three Inflow Methods for Terrains with Different Roughness.” Journal of Wind Engineering and Industrial Aerodynamics 173: 241–261.
  • Veloudis, I., Z. Yang, J. J. McGuirk, G. J. Page, and A. Spencer. 2007. “Novel Implementation and Assessment of a Digital Filter Based Approach for the Generation of les Inlet Conditions.” Flow, Turbulence and Combustion 79 (1): 1–24.
  • Vita, G., H. Hemida, T. Andrianne, and C. Baniotopoulos. 2020. “The Effect of the Integral Length Scale of Turbulence on a Wind Turbine Aerofoil.” Journal of Wind Engineering and Industrial Aerodynamics 204 (January): 104235.
  • Wang, Y., G. Vita, B. Fraga, J. Wang, and H. Hemida. 2021. “Effect of the Inlet Boundary Conditions on the Flow Over Complex Terrain Using Large Eddy Simulation.” Designs 5 (2): 34. doi:https://doi.org/10.3390/designs5020034.
  • Wu, X. 2016. “Inflow Turbulence Generation Methods.” Annual Review of Fluid Mechanics 49 (1): 23–49.
  • Wu, X., and P. Moin. 2009. “Direct Numerical Simulation of Turbulence in a Nominally Zero-Pressure-Gradient Flat-Plate Boundary Layer.” Journal of Fluid Mechanics 630: 5–41.
  • Xiao, F., M. Dianat, and J. J. McGuirk. 2013. “Large Eddy Simulation of Liquid-jet Primary Breakup in air Crossflow.” AIAA Journal 51 (12): 2878–2893.
  • Xie, Z. T., and I. P. Castro. 2008. ““Efficient Generation of Inflow Conditions for Large Eddy Simulation of Street-Scale Flows.” Flow, Turbulence and Combustion 81 (3): 449–470.
  • Zhong, J., X. Cai, and Z.-T. Xie. 2019. “Implementation of a Synthetic Inflow Turbulence Generator in Idealised WRF v3.6.1 Large Eddy Simulations Under Neutral Atmospheric Conditions.” Geoscientific Model Development 14 (1), 323–336.