Turbulence: Wall-Bounded Flows III: Pipe Flows, Channel Flows and Boundary Layers
ORAL · H04 · ID: 22781
Presentations
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Direct numerical simulation of turbulent pipe flow up to Re<sub>τ</sub>=5200
ORAL
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Presenters
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Jie Yao
- Texas Tech University
Authors
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Jie Yao
- Texas Tech University
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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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Saleh Rezaeiravesh
- SimEx/FLOW, KTH Engineering Mechanics, Royal Institute of Technology, Stockholm, Sweden
- KTH Royal Institute of Technology
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Fazle Hussain
- Texas Tech Univ
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DNS of pipe flow up to Re<sub>τ<sup>=</sup></sub>6000
ORAL
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Publication: arXiv:2103.13383
Presenters
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Sergio Pirozzoli
- Univ of Rome La Sapienza
- University of Rome La Sapienza
Authors
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Sergio Pirozzoli
- Univ of Rome La Sapienza
- University of Rome La Sapienza
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Joshua Romero
- NVIDIA Corporation
- NVIDIA
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Massimiliano Fatica
- NVIDIA Corporation
- NVIDIA
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Roberto Verzicco
- Univ of Roma
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Paolo Orlandi
- Univ of Roma
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A hierarchy of spatially localized, self-similar structures in turbulent pipe flow
ORAL
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Presenters
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Daniel Floryan
- University of Wisconsin - Madison
Authors
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Daniel Floryan
- University of Wisconsin - Madison
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Alex Guo
- University of Wisconsin - Madison
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Michael D Graham
- University of Wisconsin - Madison
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Response and recovery of turbulent pipe flow past a streamlined body of revolution
ORAL
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Presenters
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Liuyang Ding
- Princeton University
- Princeton
Authors
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Liuyang Ding
- Princeton University
- Princeton
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Ian E Gunady
- Princeton University
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Marcus Hultmark
- Princeton University
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Alexander J Smits
- Princeton University
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Response of Turbulent Pipe Flow to an Axisymmetric Body
ORAL
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Presenters
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Ian E Gunady
- Princeton University
Authors
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Ian E Gunady
- Princeton University
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Liuyang Ding
- Princeton University
- Princeton
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Marcus Hultmark
- Princeton University
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Alexander J Smits
- Princeton University
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Examining turbulent length scales and flow correlations in a direct numerical simulation study of a hypersonic boundary layer flow produced by a uniform aspect ratio mesh using a high-resolution low dissipation massively parallel CFD code.
ORAL
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Presenters
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Martin E Liza
- University of Arizona
Authors
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Martin E Liza
- University of Arizona
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Gregory C Burton
- Lawrence Livermore National Laboratory
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Kyle M Hanquist
- University of Arizona
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Numerical investigation of the effect of wall cooling on hypersonic turbulent boundary layers
ORAL
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Presenters
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Matthew W Brockhaus
- Mississippi State University
Authors
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Matthew W Brockhaus
- Mississippi State University
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Adrian Sescu
- Mississippi State University
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Ian Detwiller
- US Army Engineer Research and Development Center
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Slot film cooling downstream of misaligned plates
ORAL
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Publication: Direct numerical simulation of slot film cooling downstream of misaligned plates (submitted to Flow).
Presenters
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Haosen H Xu
- Pennsylvania State University
Authors
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Haosen H Xu
- Pennsylvania State University
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Stephen Lynch
- Pennsylvania State University
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Xiang Yang
- Pennsylvania State University
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Thermally-driven secondary flows in turbulent channel flow: Prandtl's secondary flow of the third kind
ORAL
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Presenters
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Scott T Salesky
- University of Oklahoma
- Univ of Oklahoma
Authors
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Scott T Salesky
- University of Oklahoma
- Univ of Oklahoma
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Marc Calaf
- University of Utah
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William Anderson
- University of Texas at Dallas
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A Study of Langmuir Turbulence based on Statistical State Dynamics
ORAL
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Presenters
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Eojin Kim
- Harvard University
Authors
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Eojin Kim
- Harvard University
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Brian Farrell
- Harvard University
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