Turbulence: Wake
ORAL · L02 · ID: 1762034
Presentations
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Experimental study of the stratified wake of a sphere: Internal Waves
ORAL
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Presenters
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Madeline Samuell
Johns Hopkins University
Authors
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Madeline Samuell
Johns Hopkins University
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Nerion Zekaj
University of North Carolina at Chapel Hill
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Curtis D Saunders
John Hopkins University
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Scott E Wunsch
Johns Hopkins University
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Experimental study of the stratified wake of a sphere: Core Turbulence
ORAL
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Publication: Saunders, D.C., Britt, J.A. & Wunsch, S. Decay of the drag wake of a sphere at Reynolds number 10^5. Exp Fluids 63, 71 (2022). https://doi.org/10.1007/s00348-022-03414-9<br><br>Saunders, D.C., Frederick, G., Drivas, T.D., Wunsch, S. Self-similar decay of the drag wake of a dimpled sphere. Phys. Rev. Fluids 5, 124607. (2020). https://doi.org/10.1103/PhysRevFluids.5.124607
Presenters
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Nerion Zekaj
University of North Carolina at Chapel Hill
Authors
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Nerion Zekaj
University of North Carolina at Chapel Hill
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Maddie Samuell
John Hopkins University
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Curtis D Saunders
John Hopkins University
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Scott E Wunsch
Johns Hopkins University
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Momentum entrainment of turbulent/turbulent interface in a cylinder wake
ORAL
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Presenters
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Jiangang Chen
Imperial college London
Authors
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Jiangang Chen
Imperial college London
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Oliver R Buxton
Imperial College London
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Anisotropic eddy diffusivity field associated with a two-dimensional vortex shedding flow
ORAL
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Presenters
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Hoyean Le
Stanford University
Authors
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Hoyean Le
Stanford University
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Ali Mani
Stanford University, Standard University, Department of Mechanical Engineering, Stanford University
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Causality analysis of large-scale structures in the flow around a wall-mounted square cylinder
ORAL
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Publication: J. Fluid Mech. (2023), vol. 967, A1, doi:10.1017/jfm.2023.423
Presenters
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Álvaro Martínez-Sánchez
Massachusetts Institute of Technology
Authors
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Álvaro Martínez-Sánchez
Massachusetts Institute of Technology
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Esteban López
Illinois Institute of Technology
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Soledad Le Clainche
Universidad Politécnica de Madrid
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Ankit Srivastava
Illinois Institute of Technology
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Ricardo Vinuesa
KTH (Royal Institute of Technology), KTH Royal Institute of Technology
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Adrian Lozano-Duran
MIT, Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, Massachusetts Institute of Technology
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Computational and Experimental study of Flow Past Axially Aligned Spinning Cylinders
ORAL
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Publication: [1] Experimental investigations of flow past a spinning cylinder (planned submission)<br>[2] Development of a continuous model for predicting turbulent wake flows (planned submission)
Presenters
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Igbal Mehmedagic
DEVCOM, U. S. Army
Authors
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Siva Thangam
Stevens Institute of Technology
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Igbal Mehmedagic
DEVCOM, U. S. Army
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Pasquale Carlucci
DEVCOM, U. S. Army
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Liam Buckley
DEVCOM, U. S. Army
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Donald E Carlucci
DEVCOM, U. S. Army
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Dynamic response of a cantilevered cylinder exposed to a turbulent cross-flow and freestream turbulence
ORAL
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Presenters
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Francisco Oliveira
Imperial College of Science, Technology and Medicine
Authors
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Francisco Oliveira
Imperial College of Science, Technology and Medicine
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Zahra S Khodaei
Imperial College London
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Oliver R Buxton
Imperial College London
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Modeling contaminant spread in the wake of moving persons and vehicles in various environments
ORAL
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Presenters
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Autumn Weber
New Mexico Institute of Mining and Technology
Authors
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Autumn Weber
New Mexico Institute of Mining and Technology
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Michael J Hargather
New Mexico Institute of Mining and Technology, New Mexico Tech
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Assimilation of under-resolved velocity observations in the wake of a towed sphere
ORAL
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Presenters
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Gopal R Yalla
Johns Hopkins University
Authors
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Gopal R Yalla
Johns Hopkins University
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Tamer A Zaki
Johns Hopkins University
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Mengze Wang
Johns Hopkins University; Massachusetts Institute of Technology, Massachusetts Institute of Technology
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Abstract Withdrawn
ORAL Withdrawn
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