Suspensions: Rheology
ORAL · Q01 · ID: 22832
Presentations
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Shear thinning rheology in a concentrated suspension of fibers: the role of attractive interactions
ORAL
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Presenters
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Monsurul Islam Khan
Purdue University, West Lafayette, Purdue University
Authors
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Monsurul Islam Khan
Purdue University, West Lafayette, Purdue University
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Rishabh V More
Purdue University
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Arezoo M Ardekani
Purdue, Purdue University
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Unifying disparate rate-dependent regimes in non-Brownian suspensions
ORAL
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Publication: More, R. V., and A. M. Ardekani. "Unifying disparate rate-dependent rheological regimes in non-Brownian suspensions." Physical Review E 103.6 (2021): 062610.
Presenters
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Rishabh V More
Purdue University
Authors
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Rishabh V More
Purdue University
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Arezoo M Ardekani
Purdue, Purdue University
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Experimental study of magnetorheological fluids formed used particle mixtures
ORAL
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Presenters
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Vignesh Sridhar
New Jersey Institute of Technology
Authors
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Vignesh Sridhar
New Jersey Institute of Technology
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Islam Benouaguef
New Jersey Inst of Tech
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Ian S Fischer
New Jersey Inst of Tech
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Pushpendra Singh
New Jersey Inst of Tech
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Dynamics and rheology of periodically driven suspensions
ORAL
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Presenters
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Zhouyang Ge
University of British Columbia
Authors
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Zhouyang Ge
University of British Columbia
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Gwynn J Elfring
University of British Columbia, Univeristy of British Columbia
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Effects of volume fraction and particle shape on the rheological properties of oblate spheroid suspensions
ORAL
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Publication: J. Guo, Q. Zhou, and R.C.K. Wong. Effects of volume fraction and particle shape on the rheological properties of oblate spheroid suspensions. To appear in Physics of Fluids.
Presenters
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Junwei Guo
University of Calgary
Authors
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Junwei Guo
University of Calgary
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Qi Zhou
University of Calgary
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Ron Wong
University of Calgary
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Rheology of dense, bidispersed suspensions: Segregative phenomenon induced by a flow perturbation
ORAL
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Presenters
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Alessandro Monti
Okinawa Institute of Science and Technology, Complex Fluids and Flows Unit
Authors
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Alessandro Monti
Okinawa Institute of Science and Technology, Complex Fluids and Flows Unit
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Marco Edoardo E Rosti
Okinawa Institute of Science & Technology, Okinawa Institute of Science and Technology (OIST), Okinawa Institute of Science and Technology, Complex Fluids and Flows Unit, Complex Fluids and Flows Unit, Okinawa Institute of Science and Technology Graduate University, 1919-1 Tancha, Onna-son, Okinawa 904-0495, Japan
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Experimental evidence of viscous-inertial transition in non-colloidal granular suspensions
ORAL
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Presenters
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Franco A Tapia
Department of Mechanical Systems Engineering, Tokyo University of Agriculture and Technology
Authors
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Franco A Tapia
Department of Mechanical Systems Engineering, Tokyo University of Agriculture and Technology
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Elisabeth L Guazzelli
CNRS, Université de Paris, CNRS, Matièere et Systèmes Complexes, Paris, France
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Olivier Pouliquen
Aix Marseille Univ, CNRS, IUSTI, 13453 Marseille, France
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Mie Ichihara
Earthquake Research Institute, University of Tokyo
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Rheology of mobile sediment beds sheared by viscous, pressure-driven flows
ORAL
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Publication: Vowinckel, B., Biegert, E., Meiburg, E., Aussillous, P., & Guazzelli, É. (2021). Rheology of mobile sediment beds sheared by viscous, pressure-driven flows. Journal of Fluid Mechanics, 921, A20. doi:10.1017/jfm.2021.457
Presenters
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Bernhard Vowinckel
TU Braunschweig, Germany, Technische Universität Braunschweig, Germany, Technische Universität Braunschweig, Technical University Braunschweig
Authors
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Bernhard Vowinckel
TU Braunschweig, Germany, Technische Universität Braunschweig, Germany, Technische Universität Braunschweig, Technical University Braunschweig
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Edward Biegert
University of California, Santa Barbara
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Eckart H Meiburg
University of California, Santa Barbara, University of California, Santa Barbara, US
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Pascale Aussillous
Aix Marseille Université, France
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Élisabeth Guazzelli
Université de Paris, France
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Physical aging in aqueous nematic gels of a swelling nanoclay: Sol (phase) to gel (state) transition
ORAL
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Presenters
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Mohammad Shoaib
Univ of Toronto
Authors
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Mohammad Shoaib
Univ of Toronto
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Erin R Bobicki
University of Toronto
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Single-particle stress for a graphene particle
ORAL
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Publication: Kamal, Catherine, Simon Gravelle, and Lorenzo Botto. "Hydrodynamic slip can align thin nanoplatelets in shear flow." Nature communications 11.1 (2020): 1-10.<br><br>Gravelle, Simon, Catherine Kamal, and Lorenzo Botto. "Violations of Jeffery's theory in the dynamics of nanographene in shear flow." Physical Review Fluids 6.3 (2021): 034303.<br><br>Kamal, Catherine, Simon Gravelle, and Lorenzo Botto. "Hydrodynamic slip can align thin nanoplatelets in shear flow." Nature communications 11.1 (2020): 1-10.
Presenters
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Lorenzo Botto
Delft University of Technology
Authors
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Lorenzo Botto
Delft University of Technology
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Catherine Kamal
Queen Mary Univ London
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Adyant Agrawal
Queen Mary Univ London
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Simon Gravelle
Queen Mary Univ London
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