We present a novel coarse-grain particle-based simulation technique for modeling self-developing flow of dilute and semi-dilute polymer solutions. The central idea in this paper is the two-way coupling between a mesoscopic polymer model and a phenomenological fluid model. As our polymer model, we choose Responsive Particle Dynamics (RaPiD), a Brownian dynamics method, which formulates the so-called “conservative” and “transient” pair-potentials through which the polymers interact besides experiencing random forces in accordance with the fluctuation dissipation theorem. In addition to these interactions, our polymer blobs are also influenced by the background solvent velocity field, which we calculate by solving the Navier-Stokes equation di...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
The authors analyzed extensively the dynamics of polymer chains in solutions simulated with dissipat...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
We present a novel coarse-grain particle-based simulation technique for modeling self-developing flo...
This thesis deals with model development for particle-based flow simulations of non-Newtonian fluids...
Large scale simulations of polymer flow through porous media provide an important tool for solving p...
Large scale simulations of polymer flow through porous media provide an important tool for solving p...
We present a coarse-grained particle-based simulation technique for modeling flow of complex soft ma...
We present a coarse-grained particle-based simulation technique for modeling flow of complex soft ma...
We present a coarse-grained particle-based simulation technique for modeling flow of complex soft ma...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
The authors analyzed extensively the dynamics of polymer chains in solutions simulated with dissipat...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
We present a novel coarse-grain particle-based simulation technique for modeling self-developing flo...
This thesis deals with model development for particle-based flow simulations of non-Newtonian fluids...
Large scale simulations of polymer flow through porous media provide an important tool for solving p...
Large scale simulations of polymer flow through porous media provide an important tool for solving p...
We present a coarse-grained particle-based simulation technique for modeling flow of complex soft ma...
We present a coarse-grained particle-based simulation technique for modeling flow of complex soft ma...
We present a coarse-grained particle-based simulation technique for modeling flow of complex soft ma...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
We describe in detail how to implement a coarse-grained hybrid molecular dynamics and stochastic rot...
The authors analyzed extensively the dynamics of polymer chains in solutions simulated with dissipat...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...