Particle-Laden Flows: Non-Spherical and Deformable Particles II
ORAL · Q36 · ID: 681724
Presentations
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Rheology and microstructure of a particle-laden soap film
ORAL
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Presenters
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Jonathan Lalieu
Universite Paris-Saclay
Authors
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Jonathan Lalieu
Universite Paris-Saclay
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Antoine Seguin
Université Paris-Saclay
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Georges Gauthier
Université Paris-Saclay
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Buoyant, non-spherical particles in turbulent wind-driven waves
ORAL
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Presenters
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Lucia Baker
University of Washington
Authors
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Lucia Baker
University of Washington
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Anusha Aggarwal
University of Washington
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Julio E Chavez-Dorado
University of Washington
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Inessa Garrey
University of Washington
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Michelle H DiBenedetto
University of Washington
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Numerical modeling of dispersion of non-spherical particles by waves and currents
ORAL
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Presenters
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Laura K Clark
Stanford University
Authors
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Laura K Clark
Stanford University
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Michelle H DiBenedetto
University of Washington
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Nicholas T Ouellette
Stanford Univ, Stanford University
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Jeffrey R Koseff
Stanford Univ
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Physical Beaching Process of Microplastic Particles from Regular Waves
ORAL
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Presenters
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Ben Davidson
University of Wisconsin - Madison
Authors
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Ben Davidson
University of Wisconsin - Madison
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Nimish Pujara
University of Wisconsin-Madison
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Orientation dynamics of a slender particle in simple shear flow of a viscoelastic fluid: Theory and direct numerical simulations
ORAL
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Presenters
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Arjun Sharma
Cornell University
Authors
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Arjun Sharma
Cornell University
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Donald L Koch
Cornell University
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Tumbling of quasi-straight to slightly curved fibers in channel flow turbulence
ORAL
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Publication: Universal scaling of non-axisymmetric fibers tumbling rate in channel turbulence, under preparation, to be submitted to JFM. (Directly related to this work)
Alipour M., De Paoli M., and Soldati A., Influence of Reynolds number on the dynamics of rigid, slender and non-axisymmetric fibers in channel flow turbulence, Journal of Fluid Mechanics , 934, A18, (2022). (Partially related to this work)
Alipour M., De Paoli M., Ghaemi S., and Soldati A., Long non-axisymmetric fibers in turbulent channel Flow, J. Fluid Mech, 916, A3, (2021). (Partially related to this work)
Presenters
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Alfredo Soldati
Vienna Univ of Technology, TU Wien & University of Udine
Authors
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Mobin Alipour
Yale University
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Marco De Paoli
Vienna Univ of Technology, Vienna Univ of Technology / University of Twente
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Alfredo Soldati
Vienna Univ of Technology, TU Wien & University of Udine
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Disks settling in turbulence: an experimental study
ORAL
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Presenters
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Amy Tinklenberg
University of Minnesota
Authors
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Amy Tinklenberg
University of Minnesota
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Michele Guala
University of Minnesota
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Filippo Coletti
ETH Zurich, Department of Mechanical and Process Engineering, ETH Zurich, Switzerland
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Studies of the Dynamics of Suspensions of Ellipsoidal Particles
ORAL
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Publication: The Dynamics of a Suspension of Ellipsoidal Particles—Effect of Volume Fraction (in preparation)
Presenters
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Gretar Tryggvason
Johns Hopkins University
Authors
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Jiacai Lu
Johns Hopkins University
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Xu Xu
Johns Hopkins University
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Shijie Zhong
Johns Hopkins University
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Rui Ni
Johns Hopkins University
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Gretar Tryggvason
Johns Hopkins University
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Orientation dynamics of a spheroidal particle settling in a simple shear flow
ORAL
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Presenters
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Himanshu Mishra
Indian Institute of Technology Madras
Authors
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Himanshu Mishra
Indian Institute of Technology Madras
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Anubhab Roy
Indian Institute of Technology Madras
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