Stochastic Eulerian-lagrangian Methods for Fluid-structure Interactions with Thermal Fluctuations and Shear Boundary Conditions
نویسنده
چکیده
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.
منابع مشابه
Simulation of Complex Fluids and Soft Materials Using Stochastic Eulerian Lagrangian Methods with Shear Boundary Conditions
We introduce computational methods for rheological studies of soft materials and complex fluids. The approach allows for investigations of the roles played by the microstructure interactions and kinetics and by the dynamics of the fluid. The approach takes into account consistently the elastic mechanics of the microstructures, hydrodynamics, and thermal fluctuations. To study rheological respon...
متن کاملStochastic Eulerian Lagrangian methods for fluid-structure interactions with thermal fluctuations
We present approaches for the study of fluid-structure interactions subject to thermal fluctuations. A mixed mechanical description is utilized combining Eulerian and Lagrangian reference frames. We establish general conditions for operators coupling these descriptions. Stochastic driving fields for the formalism are derived using principles from statistical mechanics. The stochastic differenti...
متن کاملIncorporating Shear into Stochastic Eulerian Lagrangian Methods for Rheological Studies of Complex Fluids and Soft Materials
We introduce computational methods based on fluctuating hydrodynamics for investigations of the rheological responses of complex fluids and soft materials. Our approach allows for different types of shear to be imposed on the unit periodic cell and is shown to take into account consistently the microstructure elastic mechanics, fluid-structure hydrodynamic coupling, and thermal fluctuations. Ne...
متن کاملStochastic Reductions for Inertial Fluid-Structure Interactions Subject to Thermal Fluctuations
We investigate the dynamics of elastic microstructures that interact with a fluid flow when subject to thermal fluctuations. We perform analysis to obtain systematically simplified descriptions of the mechanics in the limiting regimes when (i) the coupling forces that transfer momentum between the fluid and microstructures is strong, (ii) the mass of the microstructures is small relative to the...
متن کاملFluctuating Hydrodynamics Methods for Dynamic Coarse-Grained Implicit-Solvent Simulations in LAMMPS
W e introduce a software package integrated with the molecular dynamics software LAMMPS for fluctuating hydrodynamics simulations of fluid-structure interactions subject to thermal fluctuations. The package is motivated to provide dynamic thermostats to extend implicit-solvent coarse-grained (IS-CG) models by incorporating kinetic contributions from the solvent to facilitate their use in a wide...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2009