In this paper we analyze several acceleration techniques for the discrete ordinate method with matrix exponential and the small-angle modification of the radiative transfer equation. These techniques include the left eigenvectors matrix approach for computing the inverse of the right eigenvectors matrix, the telescoping technique, and the method of false discrete ordinate. The numerical simulations have shown that on average, the relative speedup of the left eigenvector matrix approach and the telescoping technique are of about 15% and 30%, respectively
Three popular spatial differencing practices for the discrete ordinates method are examined in detai...
This paper deals with finding accurate solutions for photon transport problems in highly heterogeneo...
In this work the method of discrete ordinates is applied for the solution of the problem of transfer...
In this paper we analyze several acceleration techniques for the discrete ordinate method with matri...
We present a discrete-ordinate algorithm using the matrix-exponential solution for pseudo-spherical ...
The paper is devoted to the extension of the matrix-exponential formalism for the scalar radiative t...
The ability to solve the radiative transfer equation in a fast and accurate fashion is central to se...
In this article, improvements in a recently developed discrete ordinates method the two-component m...
This paper outlines the matrix exponential description of radiative transfer. The eigendecomposition...
In work the method of discrete ordinates is applied to the solution of a problem of transfer of radi...
International audienceIn this paper, we propose a new non-linear technique for accelerating the solu...
The stationary monochromatic radiative transfer equation (RTE) is a partial differential transport e...
The dynamical low-rank (DLR) approximation is an efficient technique to approximate the solution to ...
A coupled synthetic and multigrid acceleration method has been developed for two-dimensional discret...
Predictive accuracy of the method-of-lines (MOL) solution of discrete ordinates method (DOM) for tra...
Three popular spatial differencing practices for the discrete ordinates method are examined in detai...
This paper deals with finding accurate solutions for photon transport problems in highly heterogeneo...
In this work the method of discrete ordinates is applied for the solution of the problem of transfer...
In this paper we analyze several acceleration techniques for the discrete ordinate method with matri...
We present a discrete-ordinate algorithm using the matrix-exponential solution for pseudo-spherical ...
The paper is devoted to the extension of the matrix-exponential formalism for the scalar radiative t...
The ability to solve the radiative transfer equation in a fast and accurate fashion is central to se...
In this article, improvements in a recently developed discrete ordinates method the two-component m...
This paper outlines the matrix exponential description of radiative transfer. The eigendecomposition...
In work the method of discrete ordinates is applied to the solution of a problem of transfer of radi...
International audienceIn this paper, we propose a new non-linear technique for accelerating the solu...
The stationary monochromatic radiative transfer equation (RTE) is a partial differential transport e...
The dynamical low-rank (DLR) approximation is an efficient technique to approximate the solution to ...
A coupled synthetic and multigrid acceleration method has been developed for two-dimensional discret...
Predictive accuracy of the method-of-lines (MOL) solution of discrete ordinates method (DOM) for tra...
Three popular spatial differencing practices for the discrete ordinates method are examined in detai...
This paper deals with finding accurate solutions for photon transport problems in highly heterogeneo...
In this work the method of discrete ordinates is applied for the solution of the problem of transfer...