arXiv · 1405.5544
Brownian dynamics simulations of planar mixed flows of polymer solutions at finite concentrations
Abstract
Periodic boundary conditions for planar mixed flows are implemented in the context of a multi-chain Brownian dynamics simulation algorithm. The effect of shear rate $\dot{\gamma}$, and extension rate $\dot{\epsilon}$, on the size of polymer chains, $\left $, and on the polymer contribution to viscosity, $\eta$, is examined for solutions of FENE dumbbells at finite concentrations, with excluded volume interactions between the beads taken into account. The influence of the mixedness parameter, $\chi$, and flow strength, $\dot{\Gamma}$, on $\left $ and $\eta$, is also examined, where $\chi \rightarrow 0$ corresponds to pure shear flow, and $\chi \rightarrow 1$ corresponds to pure extensional flow. It is shown that there exists a critical value, $\chi_\text{c}$, such that the flow is shear dominated for $\chi < \chi_\text{c}$, and extension dominated for $\chi > \chi_\text{c}$.
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Aashish Jain, Chandi Sasmal, Remco Hartkamp, B. D. Todd, J. Ravi Prakash. 2014-05-21. Brownian dynamics simulations of planar mixed flows of polymer solutions at finite concentrations. https://doi.org/10.1016/j.ces.2014.09.035
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