Articles with public access mandates - Martin R. MaxeyLearn more
Not available anywhere: 2
Simulation methods for particulate flows and concentrated suspensions
M Maxey
Annual Review of Fluid Mechanics 49 (1), 171-193, 2017
Mandates: US National Science Foundation, US Department of Energy
Simulation study of particle clouds in oscillating shear flow
AA Howard, MR Maxey
Journal of Fluid Mechanics 852, 484-506, 2018
Mandates: US National Science Foundation, US Department of Energy
Available somewhere: 16
Accumulation of swimming bacteria near a solid surface
G Li, J Bensson, L Nisimova, D Munger, P Mahautmr, JX Tang, MR Maxey, ...
Physical Review E—Statistical, Nonlinear, and Soft Matter Physics 84 (4 …, 2011
Mandates: US National Institutes of Health
Operator learning for predicting multiscale bubble growth dynamics
C Lin, Z Li, L Lu, S Cai, M Maxey, GE Karniadakis
The Journal of Chemical Physics 154 (10), 2021
Mandates: US Department of Energy
Self-cleaning of hydrophobic rough surfaces by coalescence-induced wetting transition
K Zhang, Z Li, M Maxey, S Chen, GE Karniadakis
Langmuir 35 (6), 2431-2442, 2019
Mandates: US Department of Energy, US Department of Defense, National Natural Science …
A seamless multiscale operator neural network for inferring bubble dynamics
C Lin, M Maxey, Z Li, GE Karniadakis
Journal of Fluid Mechanics 929, A18, 2021
Mandates: US Department of Energy, US National Aeronautics and Space Administration
Evidence of market‐driven size‐selective fishing and the mediating effects of biological and institutional factors
SMW Reddy, A Wentz, O Aburto-Oropeza, M Maxey, S Nagavarapu, ...
Ecological Applications 23 (4), 726-741, 2013
Mandates: US National Institutes of Health
A scalable consistent second-order SPH solver for unsteady low Reynolds number flows
N Trask, M Maxey, K Kim, M Perego, ML Parks, K Yang, J Xu
Computer Methods in Applied Mechanics and Engineering 289, 155-178, 2015
Mandates: US Department of Energy
A compatible high-order meshless method for the Stokes equations with applications to suspension flows
N Trask, M Maxey, X Hu
Journal of Computational Physics 355, 310-326, 2018
Mandates: US National Science Foundation, US Department of Energy
Compact moving least squares: an optimization framework for generating high-order compact meshless discretizations
N Trask, M Maxey, X Hu
Journal of Computational Physics 326, 596-611, 2016
Mandates: US Department of Energy
Settling of heavy particles in concentrated suspensions of neutrally buoyant particles under uniform shear
AA Howard, MR Maxey, K Yeo
Fluid Dynamics Research 50 (4), 041401, 2018
Mandates: US National Science Foundation, US Department of Energy
Dispersion of a suspension plug in oscillatory pressure-driven flow
FR Cui, AA Howard, MR Maxey, A Tripathi
Physical Review Fluids 2 (9), 094303, 2017
Mandates: US National Science Foundation
Shear-induced migration of a suspension under quasi-planar confinement
JT Antolik, A Howard, F Vereda, N Ionkin, M Maxey, DM Harris
arXiv preprint arXiv:2302.10380, 2023
Mandates: US Department of Energy, Government of Spain
Bidisperse suspension balance model
AA Howard, MR Maxey, S Gallier
Physical Review Fluids 7 (12), 124301, 2022
Mandates: US National Science Foundation, US Department of Energy
Modeling and simulation of discrete particles in fluid flow
MR Maxey, GL Dent
Collective Dynamics of Particles: From Viscous to Turbulent Flows, 1-38, 2017
Mandates: US National Science Foundation, US Department of Energy
Development of Scalable Parallel Implicit SPH using LAMMPS and Trilinos.
K Kim, N Trask, M Maxey, M Perego, ML Parks, K Yang, J Xu
Sandia National Lab.(SNL-NM), Albuquerque, NM (United States), 2015
Mandates: US Department of Energy
Modeling Mesoscale Processes of Scalable Synthesis
M Maxey
Brown Univ., Providence, RI (United States), 2018
Mandates: US Department of Energy
A Massively Parallel Scalable Implicit SPH Solver.
N Trask, M Maxey, K Kim, M Perego, ML Parks, K Yang, W Pan, ...
Sandia National Lab.(SNL-NM), Albuquerque, NM (United States), 2015
Mandates: US Department of Energy
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