We develop an immersed boundary approach to modeling reaction-diffusion processes in dispersions of reactive spherical particles, from the diffusion-limited to the reaction-limited setting. We represent each reactive particle with a minimally-resolved "blob" using many fewer degrees of freedom per particle than standard discretization approaches. More complicated or more highly resolved particle shapes can be built out of a collection of reactive blobs. We demonstrate numerically that the blob model can provide an accurate representation at low to moderate packing densities of the reactive particles, at a cost not much larger than solving a Poisson equation in the same domain. Unlike multipole expansion methods, our method does not require ...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
We develop an immersed boundary approach to modeling reaction-diffusion processes in dispersions of ...
International audienceSeveral classic problems for particles diffusing outside an arbitrary configur...
International audienceSeveral classic problems for particles diffusing outside an arbitrary configur...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method is introduced to perf...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
Random walk particle tracking methodologies to simulate solute transport of conservative species con...
Random walk particle tracking methodologies to simulate solute transport of conservative species con...
We studied the effect of a first order irreversible chemical reaction on masstransfer for two-phase ...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
We develop an immersed boundary approach to modeling reaction-diffusion processes in dispersions of ...
International audienceSeveral classic problems for particles diffusing outside an arbitrary configur...
International audienceSeveral classic problems for particles diffusing outside an arbitrary configur...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method is introduced to perf...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
Random walk particle tracking methodologies to simulate solute transport of conservative species con...
Random walk particle tracking methodologies to simulate solute transport of conservative species con...
We studied the effect of a first order irreversible chemical reaction on masstransfer for two-phase ...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...