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Boundary Layers: Turbulent I

ORAL · L08 · ID: 677816





Presentations

  • Comparison between pressure-driven and shear-driven oscillatory flows over ripples

    ORAL

    Presenters

    • Umberto Ciri

      University of Puerto Rico at Mayagüez, University of Puerto Rico - Mayagüez

    Authors

    • Umberto Ciri

      University of Puerto Rico at Mayagüez, University of Puerto Rico - Mayagüez

    • Sylvia Rodriguez-Abudo

      University of Puerto Rico at Mayagüez, University of Puerto Rico-Mayaguez

    • Stefano Leonardi

      UTD Wind, University of Texas at Dallas, Department of Mechanical Engineering, University of Texas at Dallas, University of Texas at Dallas

    View abstract →

  • Turbulent drag reduction for rough wall boundary layers by spanwise wall oscillations

    ORAL

    Presenters

    • Ivan Marusic

      University of Melbourne, Department of Mechanical Engineering, The University of Melbourne

    Authors

    • Ivan Marusic

      University of Melbourne, Department of Mechanical Engineering, The University of Melbourne

    • Rahul Deshpande

      University of Melbourne

    • Aman G. G Kidanemariam

      University of Melbourne, Department of Mechanical Engineering, The University of Melbourne

    • DILEEP CHANDRAN

      University of Melbourne

    • Alexander J Smits

      Princeton University

    View abstract →

  • Temporal and Spatial Evolution of a Turbulent Boundary Layer from a Drag-Reduced to a Canonical State

    ORAL

    Publication: A. Duong, T. Corke and F. Thomas, Characteristics of drag-reduced turbulent boundary layers with pulsed-direct-current plasma actuation", JFM, 915, 2021.

    Presenters

    • Andrew Myers

      University of Notre Dame

    Authors

    • Thomas C Corke

      University of Notre Dame

    • Andrew Myers

      University of Notre Dame

    • Flint O Thomas

      University of Notre Dame

    View abstract →

  • Building-block-flow model for large-eddy simulation

    ORAL

    Publication: "Self-critical machine-learning wall-modeled LES for external aerodynamics", A. Lozano-Duran & J. Bae. Center for Turbulence Research, Annual Research Briefs 2020.

    Presenters

    • Adrian Lozano-Duran

      MIT, Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, Massachusetts Institute of Technology

    Authors

    • Adrian Lozano-Duran

      MIT, Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, Massachusetts Institute of Technology

    • Yuenong Ling

      Massachusetts Institute of Technology MI, Massachusetts Institute of Technology

    • Gonzalo Arranz

      Massachusetts Institute of Technology

    • Emily Williams

      Massachusetts Institute of Technology, Massachusetts Institute of Technology MIT

    View abstract →

  • Building-block flow model for large-eddy simulation: Applications

    ORAL

    Presenters

    • Gonzalo Arranz

      Massachusetts Institute of Technology

    Authors

    • Gonzalo Arranz

      Massachusetts Institute of Technology

    • Yuenong Ling

      Massachusetts Institute of Technology MI, Massachusetts Institute of Technology

    • Emily Williams

      Massachusetts Institute of Technology, Massachusetts Institute of Technology MIT

    • Konrad Goc

      Stanford University, Center for Turbulence Research, Stanford University

    • Kevin P Griffin

      Center for Turbulence Research, Stanford University

    • Adrian Lozano-Duran

      MIT, Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, Massachusetts Institute of Technology

    View abstract →

  • Direct numerical simulation of the Gaussian (Boeing) bump: pressure gradient and curvature effects

    ORAL

    Presenters

    • Aviral Prakash

      University of Colorado at Boulder, University of Colorado Boulder

    Authors

    • Aviral Prakash

      University of Colorado at Boulder, University of Colorado Boulder

    • Riccardo Balin

      Argonne National Laboratory

    • John A Evans

      University of Colorado at Boulder, University of Colorado, Boulder

    • Kenneth E Jansen

      University of Colorado, Boulder

    View abstract →

  • Relations for the skin-friction coefficient of canonical flows

    ORAL

    Publication: Ricco, P. Skote, M. Integral relations for the skin-friction coefficient of canonical flows, J. Fluid Mech., 943, A50, (2002).

    Presenters

    • Pierre Ricco

      University of Sheffield, Department of Mechanical Engineering, The University of Sheffield (UK)

    Authors

    • Pierre Ricco

      University of Sheffield, Department of Mechanical Engineering, The University of Sheffield (UK)

    • Martin Skote

      Cranfield University

    View abstract →