A new implementation of the conventional Stokesian Dynamics (SD) algorithm, called accelerated Stokesian Dynamics (ASD), is presented. The equations governing the motion of N particles suspended in a viscous fluid at low particle Reynolds number are solved accurately and efficiently, including all hydrodynamic interactions, but with a significantly lower computational cost of O(N ln N). The main differences from the conventional SD method lie in the calculation of the many-body long-range interactions, where the Ewald-summed wave-space contribution is calculated as a Fourier transform sum and in the iterative inversion of the now sparse resistance matrix. The new method is applied to problems in the rheology of both structured and random su...
The methodology of "Stokesian dynamics," an efficient and accurate simulation technique for suspensi...
Particles suspended or dispersed in a fluid medium occur in a wide variety of natural and man-made s...
A method for computing Laplace and Stokes interactions among N spherical particles arbitrarily place...
A new implementation of the conventional Stokesian Dynamics (SD) algorithm, called accelerated Stoke...
A new implementation of the conventional Stokesian Dynamics (SD) algorithm, called Accelerated Stoke...
A new Stokesian dynamics (SD) algorithm for Brownian suspensions is presented. The implementation is...
A general method for computing the hydrodynamic interactions among an infinite suspension of particl...
A general method for computing the hydrodynamic interactions among an infinite suspension of particl...
In this work we develop the Spectral Ewald Accelerated Stokesian Dynamics (SEASD), a novel computati...
In this work we develop the Spectral Ewald Accelerated Stokesian Dynamics (SEASD), a novel computati...
A new simulation method is presented for low-Reynolds-number flow problems involving elongated parti...
Coarse Particle sedimentation is studied by using an algorithm with no adjustable parameters based o...
We consider fast computation methods for simulation of dynamics of a collection of particles dispers...
Since its development, Stokesian Dynamics has been a leading approach for the dynamic simulation of ...
Complex fluids comprise two phases of materials: a solvent phase and a non-continuum phase such as m...
The methodology of "Stokesian dynamics," an efficient and accurate simulation technique for suspensi...
Particles suspended or dispersed in a fluid medium occur in a wide variety of natural and man-made s...
A method for computing Laplace and Stokes interactions among N spherical particles arbitrarily place...
A new implementation of the conventional Stokesian Dynamics (SD) algorithm, called accelerated Stoke...
A new implementation of the conventional Stokesian Dynamics (SD) algorithm, called Accelerated Stoke...
A new Stokesian dynamics (SD) algorithm for Brownian suspensions is presented. The implementation is...
A general method for computing the hydrodynamic interactions among an infinite suspension of particl...
A general method for computing the hydrodynamic interactions among an infinite suspension of particl...
In this work we develop the Spectral Ewald Accelerated Stokesian Dynamics (SEASD), a novel computati...
In this work we develop the Spectral Ewald Accelerated Stokesian Dynamics (SEASD), a novel computati...
A new simulation method is presented for low-Reynolds-number flow problems involving elongated parti...
Coarse Particle sedimentation is studied by using an algorithm with no adjustable parameters based o...
We consider fast computation methods for simulation of dynamics of a collection of particles dispers...
Since its development, Stokesian Dynamics has been a leading approach for the dynamic simulation of ...
Complex fluids comprise two phases of materials: a solvent phase and a non-continuum phase such as m...
The methodology of "Stokesian dynamics," an efficient and accurate simulation technique for suspensi...
Particles suspended or dispersed in a fluid medium occur in a wide variety of natural and man-made s...
A method for computing Laplace and Stokes interactions among N spherical particles arbitrarily place...