Pn. Brown et Cs. Woodward, Preconditioning strategies or fully implicit radiation diffusion with material-energy transfer, SIAM J SC C, 23(2), 2001, pp. 499-516
In this paper, we present a comparison of four preconditioning strategies f
or Jacobian systems arising in the fully implicit solution of radiation dif
fusion coupled with material energy transfer. The four preconditioning meth
ods are block Jacobi, Schur complement, and operator splitting approaches t
hat split the preconditioner solve into two steps. One splitting method inc
ludes the coupling of the radiation and material fields that appears in the
matrix diagonal in the rst solve, and the other method puts this coupling
into the second solve. All preconditioning approaches use multigrid methods
to invert blocks of the matrix formed from the diffusion operator. The Sch
ur complement approach is clearly seen to be the most effective for a large
range of weightings between the diffusion and energy coupling terms. In ad
dition, tabulated opacity studies were conducted where, again, the Schur pr
econditioner performed well. Last, a parallel scaling study was done showin
g algorithmic scalability of the Schur preconditioner.