Simulating Brownian suspensions with fluctuating hydrodynamics
arXiv:1507.02185 · doi:10.1063/1.4938173
Abstract
Fluctuating hydrodynamics has been successfully combined with several computational methods to rapidly compute the correlated random velocities of Brownian particles. In the overdamped limit where both particle and fluid inertia are ignored, one must also account for a Brownian drift term in order to successfully update the particle positions. In this paper, we present an efficient computational method for the dynamic simulation of Brownian suspensions with fluctuating hydrodynamics that handles both computations and provides a similar approximation as Stokesian Dynamics for dilute and semidilute suspensions. This advancement relies on combining the fluctuating force-coupling method (FCM) with a new midpoint time-integration scheme we refer to as the drifter-corrector (DC). The DC resolves the drift term for fluctuating hydrodynamics-based methods at a minimal computational cost when constraints are imposed on the fluid flow to obtain the stresslet corrections to the particle hydrodynamic interactions. With the DC, this constraint need only be imposed once per time step, reducing the simulation cost to nearly that of a completely deterministic simulation. By performing a series of simulations, we show that the DC with fluctuating FCM is an effective and versatile approach as it reproduces both the equilibrium distribution and the evolution of particulate suspensions in periodic as well as bounded domains. In addition, we demonstrate that fluctuating FCM coupled with the DC provides an efficient and accurate method for large-scale dynamic simulation of colloidal dispersions and the study of processes such as colloidal gelation.
References in corpus (6)
- Colloidal Gels: Equilibrium and Non-Equilibrium Routes
- P3DFFT: a framework for parallel computations of Fourier transforms in three dimensions
- Brownian Dynamics of Confined Rigid Bodies
- Brownian Dynamics without Green's Functions
- Spatially Adaptive Stochastic Methods for Fluid-Structure Interactions Subject to Thermal Fluctuations in Domains with Complex Geometries
- A multiblob approach to colloidal hydrodynamics with inherent lubrication
Cited by in corpus (17)
- Rapid Sampling of Stochastic Displacements in Brownian Dynamics Simulations
- Hydrodynamics of Suspensions of Passive and Active Rigid Particles: A Rigid Multiblob Approach
- Large Scale Brownian Dynamics of Confined Suspensions of Rigid Particles
- Brownian Dynamics of Confined Suspensions of Active Microrollers
- Rapid Sampling of Stochastic Displacements in Brownian Dynamics Simulations with Stresslet Constraints
- Fast Simulation of Particulate Suspensions Enabled by Graph Neural Network
- Active Stokesian Dynamics
- A fluctuating boundary integral method for Brownian suspensions
- A generalised drift-correcting time integration scheme for Brownian suspensions of rigid particles with arbitrary shape
- Computing hydrodynamic interactions in confined doubly-periodic geometries in linear time
- Brownian Dynamics of Fully Confined Suspensions of Rigid Particles Without Green's Functions
- Hydrodynamically-bound states of a pair of microrollers: a dynamical system insight
- A Discrete Ion Stochastic Continuum Overdamped Solvent Algorithm for Modeling Electrolytes
- Hydrodynamic fluctuations in quasi-two dimensional diffusion
- Modeling Electrokinetic Flows with the Discrete Ion Stochastic Continuum Overdamped Solvent Algorithm
- Steric effects in induced-charge electro-osmosis for strong electric fields
- Fluctuating hydrodynamics of an autophoretic particle near a permeable interface