A multiscale framework for polymer modeling applied in a complex fluid flow
Author:
Funder
University of Hyogo
New Energy and Industrial Technology Development Organization
Japan Society for the Promotion of Science
Publisher
Elsevier BV
Reference43 articles.
1. Coarse-grained simulations of polyelectrolyte brushes using a hybrid model;Kinjo;Colloid Polym. Sci.,2018
2. Multiscale modeling of polymer flow-induced migration and size separation in a microfluidic contraction flow;Jiang;J. Nonnewton. Fluid Mech.,2014
3. An efficient algorithm for multiscale flow simulation of dilute polymeric solutions using bead-spring chains;Koppol;J. Nonnewton. Fluid Mech.,2007
4. On the multiscale description of dilute suspensions of non-Brownian rigid clusters composed of rods;Abisset-Chavanne;J. Nonnewton. Fluid Mech.,2015
5. A multiscale SPH method for simulating transient viscoelastic flows using bead-spring chain model;Xu;J. Nonnewton. Fluid Mech.,2016
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