An implicit, spherical harmonic (Pn) method for solving thermal transport problems is developed. The method uses a high resolution Riemann solver to produce an upwinded discretization. The high resolution scheme introduces nonlinearities to the radiation transport operator to avoid the creation of artificial oscillations in the solution. By using a minmod limiter a quasi-linear approach to solving this nonlinear system of equations is developed. Through analysis and numerical results it is shown that the quasi-linear approach does suppress artificial oscillations and gives better than first order accuracy and is less computationally demanding than a fully nonlinear solve. The time integration methods considered are the backward Euler method...
The study of radiative transfer within participating gaseous and particulate media has become increa...
The study of radiative transfer within participating gaseous and particulate media has become increa...
This is the final report of a three-year, Laboratory-Directed Research and Development (LDRD) projec...
The time-dependent radiation transport has been solved using the spherical harmonics method. One pro...
The time-dependent radiation transport has been solved using the spherical harmonics method. One pro...
Recent work by McClarren & Hauck [29] suggests that the filtered spherical harmonics method represen...
Recent work by McClarren and Hauck (2010) [31] suggests that the filtered spherical harmonics metho...
Recent work by McClarren & Hauck [32] suggests that the filtered spherical harmonics method repr...
Recent work by McClarren & Hauck [29] suggests that the filtered spherical harmonics method represen...
The spherical harmonics (PN) method is a radiative transfer equation solver, which approximates the ...
The exact treatment of the radiative transfer equation (RTE) is difficult even for idealized situ-at...
In this thesis the author has developed a simplified spherical harmonic method (SP{sub N} method) an...
International audienceThe analytical layered solution for radiative transfer through participating o...
This work is the first part in a series of two articles, where the objective is to construct, analyz...
This work is the first part in a series of two articles, where the objective is to construct, analyz...
The study of radiative transfer within participating gaseous and particulate media has become increa...
The study of radiative transfer within participating gaseous and particulate media has become increa...
This is the final report of a three-year, Laboratory-Directed Research and Development (LDRD) projec...
The time-dependent radiation transport has been solved using the spherical harmonics method. One pro...
The time-dependent radiation transport has been solved using the spherical harmonics method. One pro...
Recent work by McClarren & Hauck [29] suggests that the filtered spherical harmonics method represen...
Recent work by McClarren and Hauck (2010) [31] suggests that the filtered spherical harmonics metho...
Recent work by McClarren & Hauck [32] suggests that the filtered spherical harmonics method repr...
Recent work by McClarren & Hauck [29] suggests that the filtered spherical harmonics method represen...
The spherical harmonics (PN) method is a radiative transfer equation solver, which approximates the ...
The exact treatment of the radiative transfer equation (RTE) is difficult even for idealized situ-at...
In this thesis the author has developed a simplified spherical harmonic method (SP{sub N} method) an...
International audienceThe analytical layered solution for radiative transfer through participating o...
This work is the first part in a series of two articles, where the objective is to construct, analyz...
This work is the first part in a series of two articles, where the objective is to construct, analyz...
The study of radiative transfer within participating gaseous and particulate media has become increa...
The study of radiative transfer within participating gaseous and particulate media has become increa...
This is the final report of a three-year, Laboratory-Directed Research and Development (LDRD) projec...