Boundary Layers: Turbulent Boundary Layers III
ORAL · Q07 · ID: 22805
Presentations
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Spectral and Coherence Analyses of wind-LiDAR measurements collected in the Atmospheric Surface Layer for detecting the k<sup>-1</sup> spectral region
ORAL
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Presenters
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Matteo Puccioni
- University of Texas at Dallas
Authors
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Matteo Puccioni
- University of Texas at Dallas
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Travis J. Morrison
- University of Utah
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Alexei Perelet
- University of Utah
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Sebastian Hoch
- University of Utah
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Marc Calaf
- University of Utah
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Eric Pardyjak
- University of Utah
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Giacomo Valerio Iungo
- University of Texas at Dallas
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An Experimental Investigation of the Influence of Superhydrophobic Surfaces on Turbulent Boundary Layer Separation
ORAL
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Presenters
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Daniel J Grieb
- University of California, Berkeley
Authors
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Daniel J Grieb
- University of California, Berkeley
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Simo A Makiharju
- University of California, Berkeley
- UC Berkeley
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A novel mean shear stress model and its application in pressure gradient turbulent boundary layers
ORAL
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Publication: Kumar, P., & Mahesh, K. (2021). A method to determine wall shear stress from mean profiles in turbulent boundary layers. arXiv preprint arXiv:2106.03981.
Presenters
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Praveen Kumar
- University of Minnesota
Authors
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Praveen Kumar
- University of Minnesota
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Krishnan Mahesh
- University of Minnesota
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Streamline coordinate analysis of the flow past an axisymmetric body computed by large-eddy simulation
ORAL
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Publication: Large-eddy simulation and streamline coordinate analysis of flow over an axisymmetric hull (Journal of Fluid Mechanics)
Presenters
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Nicholas Morse
- University of Minnesota
Authors
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Nicholas Morse
- University of Minnesota
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Krishnan Mahesh
- University of Minnesota
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Non-equilibrium turbulent boundary layer with adverse pressure gradient and convex wall curvature
ORAL
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Presenters
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Saurabh Pargal
- Michigan State University
Authors
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Saurabh Pargal
- Michigan State University
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Hao Wu
- Université de Sherbrooke
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Junlin Yuan
- Michigan State University
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Stéphane Moreau
- Université de Sherbrooke
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Spatio-temporal statistics of a turbulent boundary layer under unsteady adverse pressure gradients : data from Time-Resolved Particle Image Velocimetry
ORAL
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Presenters
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Aadhy S Parthasarathy
- University of Illinois at Urbana-Champai
Authors
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Aadhy S Parthasarathy
- University of Illinois at Urbana-Champai
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Theresa Saxton-Fox
- Department of Aerospace Engineering, University of Illinois Urbana-Champaign
- University of Illinois at Urbana-Champaign
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Wall-modeled large-eddy simulations of flow over a Gaussian-shaped bump with a relaminarization sensor
ORAL
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Presenters
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Naili Xu
- University of Southern California
Authors
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Naili Xu
- University of Southern California
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Ivan Bermejo-Moreno
- University of Southern California
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Large-Eddy Simulation of a Boundary Layer with Unsteady Pressure Gradient
ORAL
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Presenters
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Francesco Ambrogi
Authors
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Francesco Ambrogi
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Zvi hantsis
- Queen's University
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David E Rival
- Queen's University
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Ugo Piomelli
- Queen's University
- Queen's university
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Spectral analysis of a high-Reynolds-number near-equilibrium adverse-pressure-gradient turbulent boundary layer
ORAL
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Publication: An adverse-pressure-gradient turbulent boundary layer with nearly-constant $\boldsymbol{\beta \simeq 1.4}$ up to $\boldsymbol{Re_{\theta} \simeq 8,700}$. For publication in JFM
Presenters
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Ramon Pozuelo
- KTH Royal Institute of Technology
Authors
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Ramon Pozuelo
- KTH Royal Institute of Technology
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Qiang Li
- KTH Royal Institute of Technology
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Philipp Schlatter
- SimEx/FLOW, KTH Engineering Mechanics, Royal Institute of Technology, Stockholm, Sweden
- KTH Royal Institute of Technology
- SimEx/FLOW, KTH Engineering Mechanics
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Ricardo Vinuesa
- SimEx/FLOW, KTH Engineering Mechanics, Royal Institute of Technology, Stockholm, Sweden
- KTH Royal Institute of Technology
- KTH
- SimEx/FLOW, KTH Engineering Mechanics
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Effect of wing-tip vortices on aerodynamic quantities of a NACA0012 wing
ORAL
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Presenters
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Siavash Toosi
- KTH Royal Institute of Technology
Authors
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Siavash Toosi
- KTH Royal Institute of Technology
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Adam Peplinski
- KTH Royal Institute of Technology
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Philipp Schlatter
- SimEx/FLOW, KTH Engineering Mechanics, Royal Institute of Technology, Stockholm, Sweden
- KTH Royal Institute of Technology
- SimEx/FLOW, KTH Engineering Mechanics
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Ricardo Vinuesa
- SimEx/FLOW, KTH Engineering Mechanics, Royal Institute of Technology, Stockholm, Sweden
- KTH Royal Institute of Technology
- KTH
- SimEx/FLOW, KTH Engineering Mechanics
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