The Lattice Monte Carlo (LMC) method recently developed by the authors is an unusually powerful and flexible method in which a given phenomenological thermal or mass transport problem is mapped onto a fine-grained lattice which is then analyzed with discrete random walk methods. We provide an overview of the LMC method. For mass diffusion we highlight the addressing of diffusion with reversible reaction. For thermal transport we highlight a calculation of the effective thermal conductivity of sintered hollow sphere structures making use of CT scans of actual material as well as the determination of temperature profiles in phase-change composites
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
Ever since its development during World War II as part of the Manhattan Project, the Monte Carlo met...
This paper addresses the use of the Lattice Monte Carlo method for the thermal characterization of c...
In this overview, we introduce the recently developed Lattice Monte Carlo method for addressing and ...
In this paper, we review the recent developed method based around lattice-based random walks and the...
In this review paper, we introduce the recently developed Lattice Monte Carlo method for addressing...
In this review paper, we introduce the recently developed Lattice Monte Carlo method for addressing...
This Chapter addresses the numerical simulation of thermal diffusion in multi-phase materials. A Lat...
This Chapter addresses the numerical simulation of thermal diffusion in multi-phase materials. A Lat...
In this review paper, we introduce the recently developed Lattice Monte Carlo method for addressing...
The Lattice Monte Carlo method is a computationally intensive approach towards the study of thermal ...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
Ever since its development during World War II as part of the Manhattan Project, the Monte Carlo met...
This paper addresses the use of the Lattice Monte Carlo method for the thermal characterization of c...
In this overview, we introduce the recently developed Lattice Monte Carlo method for addressing and ...
In this paper, we review the recent developed method based around lattice-based random walks and the...
In this review paper, we introduce the recently developed Lattice Monte Carlo method for addressing...
In this review paper, we introduce the recently developed Lattice Monte Carlo method for addressing...
This Chapter addresses the numerical simulation of thermal diffusion in multi-phase materials. A Lat...
This Chapter addresses the numerical simulation of thermal diffusion in multi-phase materials. A Lat...
In this review paper, we introduce the recently developed Lattice Monte Carlo method for addressing...
The Lattice Monte Carlo method is a computationally intensive approach towards the study of thermal ...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
A correct strategy for evaluation of the effective thermal diffusivity, and, similarly, for the eval...
Ever since its development during World War II as part of the Manhattan Project, the Monte Carlo met...
This paper addresses the use of the Lattice Monte Carlo method for the thermal characterization of c...