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Dissipative particle dynamics simulations in colloid and Interface science: A review
Dissipative particle dynamics (DPD) is one of the most efficient mesoscale coarse-grained
methodologies for modeling soft matter systems. Here, we comprehensively review the …
methodologies for modeling soft matter systems. Here, we comprehensively review the …
Dissipative particle dynamics (DPD): an overview and recent developments
Dissipative particle dynamics (DPD) is a mesoscale particle method that bridges the gap
between microscopic and macroscopic simulations. It can be regarded as a coarse-grained …
between microscopic and macroscopic simulations. It can be regarded as a coarse-grained …
Simulating the physical world
HJC Berendsen - Simulating the Physical World, 2004 - ui.adsabs.harvard.edu
The simulation of physical systems requires a simplified, hierarchical approach which
models each level from the atomistic to the macroscopic scale. From quantum mechanics to …
models each level from the atomistic to the macroscopic scale. From quantum mechanics to …
Simulating flow of DNA suspension using dissipative particle dynamics
We simulate DNA suspension microchannel flows using the dissipative particle dynamics
(DPD) method. Two developments make this simulation more realistic. One is to improve the …
(DPD) method. Two developments make this simulation more realistic. One is to improve the …
The dynamics of single-molecule DNA in flow
ESG Shaqfeh - Journal of Non-Newtonian Fluid Mechanics, 2005 - Elsevier
Within the last decade, fluorescence microscopy of single molecules of DNA in a plethora of
flow fields has allowed an unprecedented examination of the dynamics of polymers in flow …
flow fields has allowed an unprecedented examination of the dynamics of polymers in flow …
Shear-induced migration in flowing polymer solutions: Simulation of long-chain DNA in microchannels
RM Jendrejack, DC Schwartz, JJ De Pablo… - The Journal of …, 2004 - pubs.aip.org
We simulate dilute solution dynamics of long flexible polymer molecules in pressure driven
flow in channels with widths of roughly 0.1–10 times the polymer bulk radius of gyration. This …
flow in channels with widths of roughly 0.1–10 times the polymer bulk radius of gyration. This …
A new method to impose no-slip boundary conditions in dissipative particle dynamics
Dissipative particle dynamics (DPD) is a potentially very effective approach in simulating
mesoscale hydrodynamics. However, because of the soft potentials employed, the simple no …
mesoscale hydrodynamics. However, because of the soft potentials employed, the simple no …
Theory of shear-induced migration in dilute polymer solutions near solid boundaries
H Ma, MD Graham - Physics of Fluids, 2005 - pubs.aip.org
In this work, a continuum theory is developed for the behavior of flowing dilute polymer
solutions near solid surfaces, using a bead-spring dumbbell model of the dissolved polymer …
solutions near solid surfaces, using a bead-spring dumbbell model of the dissolved polymer …
Dissipative particle dynamics simulation: A review on investigating mesoscale properties of polymer systems
J Wang, Y Han, Z Xu, X Yang… - Macromolecular …, 2021 - Wiley Online Library
Polymer systems have typical multiscale characteristics, both in space and time. The
mesoscopic properties of polymers are difficult to describe through traditional experimental …
mesoscopic properties of polymers are difficult to describe through traditional experimental …
Electrokinetic flow of non-Newtonian fluids in microchannels
CLA Berli, ML Olivares - Journal of Colloid and Interface Science, 2008 - Elsevier
A theoretical description of the electrokinetic flow of non-Newtonian fluids through slit and
cylindrical microchannels is presented. Calculations are based on constitutive models of the …
cylindrical microchannels is presented. Calculations are based on constitutive models of the …