Stochastic Eulerian-Lagrangian Methods for Fluid-Structure Interactions with Thermal Fluctuations and Shear Boundary Conditions
arXiv:0910.5739 · doi:10.1016/j.physd.2013.09.002
Abstract
A computational approach is introduced for the study of the rheological properties of complex fluids and soft materials. The approach allows for a consistent treatment of microstructure elastic mechanics, hydrodynamic coupling, thermal fluctuations, and externally driven shear flows. A mixed description in terms of Eulerian and Lagrangian reference frames is used for the physical system. Microstructure configurations are represented in a Lagrangian reference frame. Conserved quantities, such as momentum of the fluid and microstructures, are represented in an Eulerian reference frame. The mathematical formalism couples these different descriptions using general operators subject to consistency conditions. Thermal fluctuations are taken into account in the formalism by stochastic driving fields introduced in accordance with the principles of statistical mechanics. To study the rheological responses of materials subject to shear, generalized periodic boundary conditions are developed where periodic images are shifted relative to the unit cell to induce shear. Stochastic numerical methods are developed for the formalism. As a demonstration of the methods, results are presented for the shear responses of a polymeric fluid, lipid vesicle fluid, and a gel-like material.
36 pages, 10 figures, stochastic computational methods for soft materials and complex fluids at microstructure level
References in corpus (5)
- A Stochastic Immersed Boundary Method for Fluid-Structure Dynamics at Microscopic Length Scales
- Statistical Mechanics of the Fluctuating Lattice Boltzmann Equation
- Stochastic Eulerian Lagrangian Methods for Fluid-Structure Interactions with Thermal Fluctuations
- Spatially Adaptive Stochastic Multigrid Methods for Fluid-Structure Systems with Thermal Fluctuations
- Systematic Stochastic Reduction of Inertial Fluid-Structure Interactions subject to Thermal Fluctuations
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- Topological Methods for Polymeric Materials: Characterizing the Relationship Between Polymer Entanglement and Viscoelasticity
- Surface Fluctuating Hydrodynamics Methods for the Drift-Diffusion Dynamics of Particles and Microstructures within Curved Fluid Interfaces
- Stochastic Discontinuous Galerkin Methods (SDGM) Based on Fluctuation-Dissipation Balance
- Projection Method for the Fluctuating Hydrodynamics Equations
- MLMOD: Machine Learning Methods for Data-Driven Modeling in LAMMPS