Particle-Laden Flows: Modeling, Theory, and Experimentation II
ORAL · Z36 · ID: 681674
Presentations
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Effects of the relative humidity on the particle-laden jet with crossflow
ORAL
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Presenters
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Jooyeon Park
Seoul Natl Univ
Authors
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Jooyeon Park
Seoul Natl Univ
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Hyungmin Park
Seoul Natl Univ
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Second-order inertial forces and torques on a spherical particle in a viscous linear flow
ORAL
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Presenters
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Jacques J Manaudet
Institut de Mecanique des Fluides de Toulouse
Authors
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Jacques J Manaudet
Institut de Mecanique des Fluides de Toulouse
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Fabien Candelier
Aix-Marseille Univ., CNRS, IUSTI, F-13013 Marseille, France
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Rabah Mehaddi
Université de Lorraine, CNRS, LEMTA, F-54000 Nancy, France
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Bernhard Mehlig
Goteborg Univ, Department of Physics, Gothenburg University, SE-41296 Gothenburg, Sweden
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Explaining and modeling the effect of particle distribution on mean forces and torques using hierarchical machine learning
ORAL
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Publication: https://arxiv.org/abs/2207.08888
Presenters
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B. Siddani
University of Florida
Authors
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B. Siddani
University of Florida
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Sivaramakrishnan Balachandar
University of Florida, UNIVERSITY OF FLORIDA
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Towards filter-dependent closure models for dilute and moderately dense particle-laden flow
ORAL
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Presenters
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John Wakefield
University of Michigan
Authors
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John Wakefield
University of Michigan
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Shankar Subramaniam
Iowa State University
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Jesse Capecelatro
University of Michigan
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The determination of the critical Reynolds number for particle-wall collisions using the lattice-Boltzmann method
ORAL
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Publication: O'Regan, Stephen Michael and Frawley, Patrick J. and Shardt, Orest, The Determination of the Critical Reynolds Number for Particle-Wall Collisions Using the Lattice-Boltzmann Method. Available at SSRN: https://ssrn.com/abstract=4127895 or http://dx.doi.org/10.2139/ssrn.4127895
Presenters
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Stephen O'Regan
University of Limerick
Authors
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Stephen O'Regan
University of Limerick
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Patrick Frawley
University Of Limerick
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Orest Shardt
University Of Limerick, Bernal Institute and School of Engineering, University of Limerick, Limerick, Ireland
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Inertial particle focusing in curved ducts: Bifurcations and dynamics
ORAL
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Publication: RN Valani, B Harding & YM Stokes, Bifurcations and dynamics in inertial focusing of particles in curved rectangular ducts, arXiv:2112.04638
Presenters
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Rahil Valani
Univ of Adelaide
Authors
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Rahil Valani
Univ of Adelaide
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Brendan Harding
Victoria University of Wellington
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Yvonne M Stokes
Univ of Adelaide
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Explicit Runge-Kutta generalized Exponential Time-Differencing method to solve full Maxey-Riley equation with the history force
ORAL
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Publication: Planned paper under same title
Presenters
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Divya Jaganathan
International Centre for Theoretical Sciences (ICTS-TIFR)
Authors
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Divya Jaganathan
International Centre for Theoretical Sciences (ICTS-TIFR)
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Rama Govindarajan
International Centre for Theoretical Sciences (ICTS-TIFR), International Centre for Theoretical Sciences
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Vishal Vasan
International Centre for Theoretical Sciences (ICTS-TIFR)
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Influence of particle forces and sharpness factor on erosion characteristics for dilute gas-solid flow system at moderate to high Reynolds number
ORAL
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Presenters
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Isa Mohammed
Imperial College London
Authors
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Isa Mohammed
Imperial College London
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Adel A Alghamdi
Imperial College London
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Thomas Abadie
Imperial College London; University of Birmingham, Department of Chemical Engineering, Imperial College London, Imperial College London; University of Birmingham, UK
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Omar K Matar
Imperial College London, Imperial College London, The Alan Turing Institute
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Numerical investigation of finite-time blowup related to particle collision
ORAL
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Presenters
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Seulgi Lee
Yonsei University
Authors
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Seulgi Lee
Yonsei University
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Changhoon Lee
Yonsei University
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Caustic formation in turbulent aerosols at weak particle inertia
ORAL
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Publication: Jan Meibohm, Kristian Gustavsson, Bernhard Mehlig, 2022, to be published
Presenters
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Jan N Meibohm
King's College London
Authors
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Jan N Meibohm
King's College London
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Kristian Gustavsson
University of Gothenburg
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Bernhard Mehlig
Goteborg Univ, Department of Physics, Gothenburg University, SE-41296 Gothenburg, Sweden
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