Micro/Nano Flows: Channels
ORAL · A33 · ID: 680516
Presentations
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Lucas-Washburn theory revisited for capillary rise in nanotubes
ORAL
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Publication: M. Heiranian and N. R. Aluru, "Modified Lucas-Washburn theory for fluid filling in nanotubes", Physical Review E, Vol. 105, No. 5, Art. No. 055105, 2022.
Presenters
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Mohammad Heiranian
University of Illinois at Urbana-Champai
Authors
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Mohammad Heiranian
University of Illinois at Urbana-Champai
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Narayana R Aluru
University of Texas at Austin
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Evaporation during Liquid Imbibition into Micro-Channels
ORAL
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Publication: We intend to write a journal paper on this subject, however writing has not yet started.
Presenters
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Rick Spijkers
University of Twente
Authors
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Rick Spijkers
University of Twente
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Jan Willem Mijnheer
University of Twente
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Markus Schremb
Energy, Materials and Systems; Applied Thermal Sciences; University of Twente, University of Twente
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Srinivas Vanapalli
Energy, Materials and Systems; Applied Thermal Sciences; University of Twente, University of Twente
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Molecular anatomy and macroscopic behavior of oil extraction from nanopores by CO<sub>2</sub> and CH<sub>4</sub>
ORAL
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Publication: D. Moh, H. W. Zhang, S. Y. Sun, and R. Qiao, "Molecular anatomy and macroscopic behavior of oil extraction from nanopores by CO2 and CH4," Fuel 324, (2022).
Presenters
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Hongwei Zhang
Virginia Tech
Authors
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Hongwei Zhang
Virginia Tech
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Rui Qiao
Virginia Tech
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Shuyu Sun
King Abdullah University of Science and Technology
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Do Yoon Moh
Virginia Tech
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Joint use of fluidic and elastic reciprocal theorems to find the flow rate–pressure drop relation for deformable microchannels
ORAL
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Publication: E. Boyko, H. A. Stone, I. C. Christov, Flow rate-pressure drop relation for deformable channels via fluidic and elastic reciprocal theorems, https://arxiv.org/abs/2203.14112
Presenters
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Ivan C Christov
Purdue University
Authors
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Ivan C Christov
Purdue University
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Evgeniy Boyko
Purdue University
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Howard A Stone
Princeton University, Princeton
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Nonlinear flow rate–pressure drop relations in slender compliant microtubes
ORAL
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Publication: X. Wang, S. Pande, I. C. Christov, Flow rate–pressure drop relations for new configurations of slender compliant tubes arising in microfluidics experiments, https://arxiv.org/abs/2205.10973
Presenters
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Xiaojia Wang
Purdue University
Authors
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Xiaojia Wang
Purdue University
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Shrihari D Pande
Purdue University
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Ivan C Christov
Purdue University
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Stokesian image systems and Lorentz' reflection formula
ORAL
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Presenters
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Nicholas G Chisholm
Worcester Polytechnic Institute
Authors
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Nicholas G Chisholm
Worcester Polytechnic Institute
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Sarah D Olson
Worcester Polytechnic Institute
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Characterising fluid flow and solute transport in a gravity driven microfluidic system with surface tension effects
ORAL
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Publication: Manuscript in preparation
Presenters
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Barnum Swannell
Oxford Centre for Industrial and Applied Mathematics, Mathematical Institute, University of Oxford
Authors
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Barnum Swannell
Oxford Centre for Industrial and Applied Mathematics, Mathematical Institute, University of Oxford
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Michal Rudnik
InSphero, Schlieren, Switzerland
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Olivier Frey
InSphero, Schlieren, Switzerland
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Daniela Ortiz Franyuti
Roche Pharma Research and Early Development, Pharmaceutical Sciences, Roche Innovation Center Basel
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James M Oliver
University of Oxford, Oxford Centre for Industrial and Applied Mathematics, Mathematical Institute, University of Oxford
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Sarah L Waters
University of Oxford, Oxford Centre for Industrial and Applied Mathematics, Mathematical Institute, University of Oxford
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Symmetry-Protected Stressless Microfluidics
ORAL
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Presenters
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Jeremias M Gonzalez
University of California, Merced
Authors
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Jeremias M Gonzalez
University of California, Merced
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Ajay Gopinathan
University of California Merced
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Bin Liu
University of California, Merced
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Fluid physics of telescoping cardboard boxes
ORAL
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Publication: Fluid physics of telescoping cardboard boxes, Jolet de Ruiter, Emil Visby Østergaard, Sean Marker, and Kaare H. Jensen, Phys. Rev. Fluids 7, 044101 – Published 1 April 2022<br><br>https://journals.aps.org/prfluids/abstract/10.1103/PhysRevFluids.7.044101
Presenters
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Kaare Hartvig H Jensen
Tech Univ of Denmark, Technical University of Denmark
Authors
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Kaare Hartvig H Jensen
Tech Univ of Denmark, Technical University of Denmark
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Emil Østergaard
Tech Univ of Denmark
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Sean Marker
Tech Univ of Denmark
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Jolet De Ruiter
Wageningen University
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