Interact: Boundary Layers: from Laminar to Turbulent
POSTER · C15 · ID: 2668018
Presentations
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INTERACT FLASH TALKS: Boundary Layers: from Laminar to Turbulent
COFFEE_KLATCH
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Laminar heat-flux from a cooled plate moving at hypersonic speed
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Presenters
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Thomas Ward
University of Virginia, University of Virginia, Department of Mechanical and Aerospace Engineering, Charlottesville, VA 22904
Authors
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Thomas Ward
University of Virginia, University of Virginia, Department of Mechanical and Aerospace Engineering, Charlottesville, VA 22904
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James Miller
Air Force Research Lab, Wright-Patterson Air Force Base, Dayton, OH 45433
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The nonlinear parabolized stability equations for accurate wall-modeled large-eddy simulations of transitional flows
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Carlos A Gonzalez
Center for Turbulence Research, Stanford University, Stanford University
Authors
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Carlos A Gonzalez
Center for Turbulence Research, Stanford University, Stanford University
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Shaun R Harris
Sandia National Laboratories
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Parviz Moin
Center for Turbulence Research, Stanford University, Stanford University
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A Restricted Nonlinear Study of Laminar-Turbulent Transition
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Benjamin A Minnick
Carderock NSWC, Naval Surface Warfare Center Carderock Division
Authors
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Benjamin A Minnick
Carderock NSWC, Naval Surface Warfare Center Carderock Division
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Dennice F Gayme
Johns Hopkins University
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Effects of streamline curvature on a transitioning boundary layer
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Tejas Kadambi
University of Michigan
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Tejas Kadambi
University of Michigan
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Marc Plasseraud
University of Michigan
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Krishnan Mahesh
University of Minnesota, University of Michigan
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Impact of riblets on the drag of finite-sized bodies with non-zero pressure gradients
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Shabnam Raayai
Harvard University
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Shabnam Raayai
Harvard University
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Direct numerical simulation of forced air convection with variable physical properties
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Publication: Modesti, D., & Pirozzoli, S. (2024). Friction and heat transfer in forced air convection with variable physical properties. arXiv preprint arXiv:2404.10473.
Presenters
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Davide Modesti
Delft University of Technology, Gran Sasso Science Institute
Authors
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Davide Modesti
Delft University of Technology, Gran Sasso Science Institute
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Sergio Pirozzoli
Sapienza University of Rome, University of Rome La Sapienza
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3D Particle Tracking Velocimetry to the Wall in a Zero Pressure Gradient Turbulent Boundary Layer with a Single Plenoptic Camera
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Presenters
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Mark Yamakaitis
George Washington University
Authors
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Mark Yamakaitis
George Washington University
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Philippe M Bardet
George Washington University
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Alexander M Pigeon
NSWCCD
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Jason Anderson
NSWCCD
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Colin M Parker
NSWCCD
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Robert Ehrmann
NSWCCD
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Deep learning based spatio-temporal wall-shear stress quantification from velocity measurements
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Presenters
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Esther Lagemann
AI Institute in Dynamic Systems, University of Washington
Authors
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Esther Lagemann
AI Institute in Dynamic Systems, University of Washington
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Christian Lagemann
AI Institute in Dynamic Systems, University of Washington, University of Washington
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Steven L Brunton
University of Washington
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Invariant properties of the Reynolds shear stress probability distribution in turbulent wall-bounded flows
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Spencer J Zimmerman
Johns Hopkins University, Stony Brook University
Authors
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Spencer J Zimmerman
Johns Hopkins University, Stony Brook University
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Jimmy Philip
University of Melbourne
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Yoshinobu Yamamoto
University of Yamanashi
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Yoshiyuki Tsuji
Nagoya University
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Joseph C Klewicki
University of Melbourne
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Resolvent modes as the foundation for LES wall models
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Presenters
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Ugo Piomelli
Queen's University
Authors
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Zvi hantsis
Queen's University
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Miles J Chan
California Institute of Technology, Caltech
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Beverley J McKeon
Stanford University
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Ugo Piomelli
Queen's University
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Fluid-Sediment-Object Interaction Under Oscillatory Flow
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Sylvia Rodriguez-Abudo
University of Puerto Rico at Mayagüez, University of Puerto Rico at Mayaguez
Authors
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Sylvia Rodriguez-Abudo
University of Puerto Rico at Mayagüez, University of Puerto Rico at Mayaguez
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Edwin R Aponte
University of Puerto Rico, Mayaguez Campus
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On the nonlocality of the slip length operator for scalar and momentum transport on patterned superhydrophobic surfaces in turbulent flow
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Kimberly Liu
Stanford University
Authors
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Kimberly Liu
Stanford University
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Ali Mani
Stanford University
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Minimum requirements for outer layer similarity and roughness function in wall turbulence over obstructing surfaces
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Publication: Chen Z, García-Mayoral R. Examination of outer-layer similarity in wall turbulence over obstructing surfaces. Journal of Fluid Mechanics. 2023;973:A31. doi:10.1017/jfm.2023.792
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Ricardo Garcia-Mayoral
University of Cambridge
Authors
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Zishen Chen
University of Cambridge
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Ricardo Garcia-Mayoral
University of Cambridge
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Understanding and modeling the roughness sublayer in non-equilibrium turbulent flows
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Junlin Yuan
Michigan State University
Authors
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Junlin Yuan
Michigan State University
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Giles J Brereton
Michigan State University
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Wall model for large-eddy simulation of high-speed flows over rough surfaces
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Rong Ma
Massachusetts Institute of Technology
Authors
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Rong Ma
Massachusetts Institute of Technology
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Yuan Yuan
Massachusetts Institute of Technology
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Gonzalo Arranz
Caltech
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Yuenong Ling
Massachusetts Institute of Technology
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Michael P Whitmore
Center for Turbulence Research
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Rahul Agrawal
Center for Turbulence Research, Stanford University
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Ahmed Elnahhas
Center for Turbulence Research, Stanford University
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Clark C Pederson
NASA Langley Research Center
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Adrian Lozano-Duran
Caltech, Caltech/MIT, Caltech / MIT, Massachusetts Institute of Technology
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Secondary vortices in turbulent boundary layers over combined roughness and temperature patterns
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Presenters
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Abdelhalim Abdeldayem
Katholieke University Leuven
Authors
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Abdelhalim Abdeldayem
Katholieke University Leuven
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Johan Meyers
Katholieke University Leuven
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Raúl Bayoán Cal
Portland State University
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Large-Eddy Simulation of Turbulent Flow Response to Abrupt Changes in Roughness and Thermal Conditions
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Presenters
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Xiaowei Zhu
Portland State University
Authors
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Xiaowei Zhu
Portland State University
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Raúl Bayoán Cal
Portland State University
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Turbulence and Energy Exchange in a High Reynolds Number Boundary Layer over a Compliant Surface
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Presenters
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Yuhui Lu
Johns Hopkins University
Authors
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Yuhui Lu
Johns Hopkins University
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Tianrui Xiang
Johns Hopkins University
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Tamer A Zaki
Johns Hopkins University
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Joseph Katz
Department of Mechanical Engineering, Johns Hopkins University, Johns Hopkins University
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Upstream History Effects in High-Reynolds Number Adverse-Pressure Gradient Turbulent Boundary Layers
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Presenters
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Mitchell Lozier
University of Melbourne
Authors
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Mitchell Lozier
University of Melbourne
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Ahmad Zarei
University of Melbourne
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Rahul Deshpande
University of Melbourne
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Ivan Marusic
University of Melbourne
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INTERACT DISCUSSION SESSION WITH POSTERS: Boundary Layers: from Laminar to Turbulent
COFFEE_KLATCH
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Abstract Withdrawn
POSTER Withdrawn