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Turbulence Simulation and Modeling Laboratory

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Publications

Selected Publications

  • Durbin, P.A. Reflections on roughness modelling in turbulent flow J. of Turbulence (2022) 24, 3-13
  • Yin, Z., Ge, X. and Durbin, P.A.Adaptive Detached Eddy Simulation of Transition under Influences of Freestream Turbulence and Pressure Gradient, J.Fluid Mech. 915, A115
  • Bose, Rikhi, and Paul A. Durbin. “Helical modes in boundary layer transition.” Physical Review Fluids 1.7 (2016): 073602.
  • Yin, Zifei, and Paul A. Durbin. “Passive Scalar Transport Modeling for Hybrid RANS/LES Simulation.” Flow, Turbulence and Combustion 98.1 (2017): 177-194.
  • Yin Z., Reddy K.R., & Durbin P.A. 2015 On the dynamic computation of the model constant in delayed detached eddy simulation Physics of Fluids(1994-present) 27.2 (2015): 025105
  • Reddy K.R., Ryon J.A., & Durbin P.A. 2014 A DDES model with a Smagorinsky-type eddy viscosity formulation and log-layer mismatch correction Int.~J.~Heat Fluid Flow 50 103-113
  • Ge, Xuan, and Paul A. Durbin. “An intermittency model for predicting roughness induced transition.” International Journal of Heat and Fluid Flow 54 (2015): 55-64.
  • Ge, X. Arolla, S. & Durbin, P.A. 2014 A bypass transition model based on the intermittency function Flow Turb. \& Combustion 93 37–61
  • Arolla, S. & Durbin, P.A. 2014 LES of spatially developing turbulent boundary layer over a concave surface J. of Turbulence vol. 16 Iss. 1 81-99
  • Arolla, S. & Durbin, P.A. 2014 Rotation/curvature correction for turbulence models for applied CFD Progress in computational fluid dynamics 14 341-351
  • Arolla, S. & Durbin, P.A. 2013 Modeling rotation and curvature effects within scalar eddy viscosity framework Int.~J.~Heat Fluid Flow 39 78-89
  • Durbin, P.A. 2012 An intermittency model for bypass transition Int.~J.~Heat Fluid Flow 36 1–6
  • Huang, X & Durbin, P.A. 2012 Particulate mixing in a turbulent serpentine duct Phys.~Fluids 24 013301
  • Joo, J. \& Durbin, P.A. 2012 Continuous mode transition in high-speed boundary-layers Flow Turb. \& Combustion 88 407-430
  • Durbin, P.A. 2011 Adapting Scalar Turbulence Closure Models for Rotation and Curvature J.~Fluids Eng 133 061205
  • Zaki, T., Wissink, J., Durbin, P.A. \& Rodi, W. 2010 Direct numerical simulations of transition in a compressor cascade: the influence of free-stream turbulence J.~Fluid Mech 665 57–98
  • Zaki, T., Wissink, J., Durbin, P.A. \& Rodi, W. 2009 Direct computation of boundary layers distorted by migrating wakes in a linear compressor cascade Flow Turbulence and Combustion 83 307–322
  • Durbin, P.A., Zaki, T. \& Liu, Y. 2009 Interaction of discrete and continuous boundary layer modes to cause transition Int.~J.~Heat and Fluid Flow 30 403–410
  • Liu, Y., Zaki, T. \& Durbin, P.A. 2008 Boundary Layer Transition by Interaction of Discrete and Continuous Modes J.Fluid Mech. 604 199–233
  • Durbin, P.A. \& Wu, X. 2007 Transition beneath vortical disturbances Ann. Rev. Fluid Mech 39 107–128
  • Ikeda, T. \& Durbin, P.A. 2007 Direct simulations of a rough wall channel flow J.Fluid Mech. 571 235–263
  • Zaki, T. \& Durbin, P.A. 2006 Continuous mode transition and the effects of pressure gradient J.Fluid Mech. 563 357–388
  • Statistical Theory and Modeling for Turbulent Flows, 2{nd} ed. John Wiley, 2010 ISBN: 978-0-470-68931-8
  • Fluid Dynamics with Computational Perspective Cambridge University Press, 2007 ISBN-13: 9780521850179

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