A Monte Carlo technique that simulates tracer diffusion in multiphase materials of arbitrary complexity has been developed. Effective diffusivities are calculated for structures consisting of either overlapping or nonoverlapping inclusions with diffusivity Dc, distributed in a continuous phase with diffusivity D0\u3eDc. Two-dimensional simulations for various values of D0/Dc generate normalized diffusivities that correspond closely to their three-dimensional counterparts; they nearly collapse to a common curve when a simple scaling relation is applied
The concept of block-effective dispersivity represents the difference between the classic macrodispe...
In this paper, we review the recent developed method based around lattice-based random walks and the...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A Monte Carlo technique that simulates tracer diffusion in multiphase materials of arbitrary complex...
In this paper we employ Monte Carlo computer simulation to test the extended Maxwell-Garnett express...
In this paper we perform a systematic Monte Carlo study of the effective diffusivity in a 2D composi...
This Chapter addresses the numerical simulation of thermal diffusion in multi-phase materials. A Lat...
none3The mass transport properties of a system with impermeable platelets dispersed in a polymer mat...
In this overview, we introduce the recently developed Lattice Monte Carlo method for addressing and ...
The problem of calculating the effective diffusivity in nanocrystalline materials is addressed. Two ...
abstractEN: In this Chapter, the finite element simulations of diffusion processes in homogeneous an...
A Monte Carlo simulation is presented for the tracers\u27 diffusion of an interacting lattice gas mo...
We introduce new Monte Carlo simulation schemes for diffusions in a dis-continuous media divided in ...
Biological tissues are multicompartmental heterogeneous media composed of cellular and subcellular d...
We present a study of the field-dependent dispersion coefficient of point-like particles in various ...
The concept of block-effective dispersivity represents the difference between the classic macrodispe...
In this paper, we review the recent developed method based around lattice-based random walks and the...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A Monte Carlo technique that simulates tracer diffusion in multiphase materials of arbitrary complex...
In this paper we employ Monte Carlo computer simulation to test the extended Maxwell-Garnett express...
In this paper we perform a systematic Monte Carlo study of the effective diffusivity in a 2D composi...
This Chapter addresses the numerical simulation of thermal diffusion in multi-phase materials. A Lat...
none3The mass transport properties of a system with impermeable platelets dispersed in a polymer mat...
In this overview, we introduce the recently developed Lattice Monte Carlo method for addressing and ...
The problem of calculating the effective diffusivity in nanocrystalline materials is addressed. Two ...
abstractEN: In this Chapter, the finite element simulations of diffusion processes in homogeneous an...
A Monte Carlo simulation is presented for the tracers\u27 diffusion of an interacting lattice gas mo...
We introduce new Monte Carlo simulation schemes for diffusions in a dis-continuous media divided in ...
Biological tissues are multicompartmental heterogeneous media composed of cellular and subcellular d...
We present a study of the field-dependent dispersion coefficient of point-like particles in various ...
The concept of block-effective dispersivity represents the difference between the classic macrodispe...
In this paper, we review the recent developed method based around lattice-based random walks and the...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...