Particle-Laden Flows: Modeling and Theory I
ORAL · A46 · ID: 1762764
Presentations
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A model for shear-induced breakup of layered particles and application to graphene production by turbulent exfoliation and microplastics erosion
ORAL
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Publication: Simon Gravelle, Catherine Kamal, and Lorenzo Botto. "Liquid exfoliation of multilayer graphene in sheared solvents: A molecular dynamics investigation." The Journal of Chemical Physics 152.10 (2020).<br>Adyant Agrawal, Simon Gravelle, Catherine Kamal and Lorenzo Botto. "Viscous peeling of a nanosheet." Soft matter 18.20 (2022) <br>Hugo Perrin, Lorenzo Botto "Shear-induced viscous peeling of an adhesive flexible sheet from a flat substrate" (in preparation)
Presenters
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Lorenzo Botto
Delft University of Technology, Delft University of Technology, the Netherlands
Authors
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Lorenzo Botto
Delft University of Technology, Delft University of Technology, the Netherlands
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Hugo Perrin
Delft University of Technology, the Netherlands
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Adyant Agrawal
University of Stuttgart
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Catherine Kamal
University of Cambridge, UK
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Simon Gravelle
University Grenoble Alpes
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Effect of interpolation kernels and grid refinement on two way--coupled point-particle simulations
ORAL
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Publication: Keane, N., Apte SV, Jain, SS, Khanwale, M, 2023, "Effect of interpolation kernels and grid refinement on two way-coupled point-particle simulations," International Journal of Multiphase Flow, Vol 166, 104517 (https://doi.org/10.1016/j.ijmultiphaseflow.2023.104517)
Presenters
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Sourabh V Apte
Oregon State University
Authors
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Sourabh V Apte
Oregon State University
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Nathan Keane
Oregon State University
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Suhas S Jain
Stanford University, Center for Turbulence Research, Stanford University, CA, 94305, Center for Turbulence Research, Stanford University
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Makrand A Khanwale
Center for Turbulence Research, Stanford University
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Development and Validation of Hydriding Models for Liquid Metal Ejecta in Reactive Media
ORAL
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Presenters
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Frederick Ouellet
Los Alamos National Laboratory
Authors
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Frederick Ouellet
Los Alamos National Laboratory
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Alan K Harrison
Los Alamos Natl Lab, Los Alamos National Laboratory
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Jonathan D Regele
Los Alamos National Laboratory
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Gravity-Driven Particle-Laden Flow on an Inclined Plane with Varying Topography
ORAL
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Presenters
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Evan Davis
University of California, Los Angeles
Authors
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Andrea L Bertozzi
University of California, Los Angeles
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Evan Davis
University of California, Los Angeles
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Lingyun Ding
University of California, Los Angeles
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Separation of bidensity suspensions in gravity-driven thin-film flow in helical channels
ORAL
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Presenters
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Lingyun Ding
University of California, Los Angeles
Authors
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Lingyun Ding
University of California, Los Angeles
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Sarah C Burnett
University of California, Los Angeles
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Andrea L Bertozzi
University of California, Los Angeles
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A conservation law model for a bidisperse particle laden flow on an incline
ORAL
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Presenters
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Jack Luong
University of California, Los Angeles
Authors
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Andrea L Bertozzi
University of California, Los Angeles
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Sarah C Burnett
University of California, Los Angeles
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Jack Luong
University of California, Los Angeles
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Analysis and Approximation of Flux Functions in Gravity-Driven Particle-Laden Thin Films
ORAL
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Presenters
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Hong Kiat Tan
University of California, Los Angeles
Authors
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Andrea L Bertozzi
University of California, Los Angeles
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Hong Kiat Tan
University of California, Los Angeles
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Mathematical modeling of flow over granular beds to study landscape erosion
ORAL
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Presenters
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Claudia Falcon
Wake Forest University
Authors
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Claudia Falcon
Wake Forest University
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Joyce Lin
Cal Poly University
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Dylan D Odessa
Wake Forest University, University of North Carolina at Chapel Hill
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CFD Modeling and Method Validation of Erosion Damage using a combined Eulerian-Lagrangian Approach
ORAL
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Presenters
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Emanuel Chirayath
Pennsylvania State University
Authors
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Emanuel Chirayath
Pennsylvania State University
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Matthew Menendez-Aponte
Penn State
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Robert F Kunz
Penn State
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