Robert D. Guy, Ph.D.
Affiliations: | 2004 | University of Utah, Salt Lake City, UT |
Area:
Mathematics, Fluid and Plasma Physics, General BiophysicsWebsite:
https://www.math.ucdavis.edu/research/profiles/?fac_id=guyGoogle:
"Robert Guy"Parents
Sign in to add mentorAaron Lee Fogelson | grad student | 2004 | University of Utah | |
(A continuum model of platelet aggregation: Closure, computational methods and simulation.) |
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Publications
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Granzier-Nakajima S, Guy RD, Zhang-Molina C. (2020) A Numerical Study of Metachronal Propulsion at Low to Intermediate Reynolds Numbers Fluids. 5: 86-86 |
Thomases B, Guy RD. (2019) Polymer stress growth in viscoelastic fluids in oscillating extensional flows with applications to micro-organism locomotion Journal of Non-Newtonian Fluid Mechanics. 269: 47-56 |
Stein DB, Guy RD, Thomases B. (2019) Convergent solutions of Stokes Oldroyd-B boundary value problems using the Immersed Boundary Smooth Extension (IBSE) method Journal of Non-Newtonian Fluid Mechanics. 268: 56-65 |
Lewis OL, Zhang S, Guy RD, et al. (2018) Correction to 'Coordination of contractility, adhesion and flow in migrating amoebae'. Journal of the Royal Society, Interface. 15 |
Copos CA, Guy RD. (2018) A porous viscoelastic model for the cell cytoskeleton Anziam Journal. 59: 472-498 |
Zhang S, Guy RD, Lasheras JC, et al. (2017) Self-organized mechano-chemical dynamics in amoeboid locomotion of fragments. Journal of Physics D: Applied Physics. 50 |
Li C, Qin B, Gopinath A, et al. (2017) Flagellar swimming in viscoelastic fluids: role of fluid elastic stress revealed by simulations based on experimental data. Journal of the Royal Society, Interface. 14 |
Lewis OL, Guy RD. (2017) Analysis of peristaltic waves and their role in migrating Physarum plasmodia Journal of Physics D. 50: 284001-284001 |
Thomases B, Guy RD. (2017) The role of body flexibility in stroke enhancements for finite-length undulatory swimmers in viscoelastic fluids Journal of Fluid Mechanics. 825: 109-132 |
Stein DB, Guy RD, Thomases B. (2017) Immersed Boundary Smooth Extension (IBSE): A high-order method for solving incompressible flows in arbitrary smooth domains Journal of Computational Physics. 335: 155-178 |