Title of article :
Streamline upwind Petrov–Galerkin methods for the steady-state Boltzmann transport equation Original Research Article
Author/Authors :
C.C. Pain، نويسنده , , M.D. Eaton، نويسنده , , R.P. Smedley-Stevenson، نويسنده , , A.J.H. Goddard، نويسنده , , M.D. Piggott، نويسنده , , C.R.E. de Oliveira، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
25
From page :
4448
To page :
4472
Abstract :
This paper describes Petrov–Galerkin finite element methods for solving the steady-state Boltzmann transport equation. The methods in their most general form are non-linear and therefore capable of accurately resolving sharp gradients in the solution field. In contrast to previously developed non-linear Petrov–Galerkin (shock-capturing) schemes the methods described in this paper are streamline based. The methods apply a finite element treatment for the internal domain and a Riemann approach on the boundary of the domain. This significantly simplifies the numerical application of the scheme by circumventing the evaluation of complex half-range angular integrals at the boundaries of the domain. The underlying linear Petrov–Galerkin scheme is compared with other Petrov–Galerkin methods found in the radiation transport literature such as those based on the self-adjoint angular flux equation (SAAF) [G.C. Pomraning, Approximate methods of solution of the monoenergetic Boltzmann equation, Ph.D. Thesis, MIT, 1962] and the even-parity (EP) equation [V.S. Vladmirov, Mathematical methods in the one velocity theory of particle transport, Atomic Energy of Canada Limited, Ontario, 1963]. The relationship of the linear method to Riemann methods is also explored.
Keywords :
Steady-state radiation transport , Shock-capturing , Streamline upwind Petrov–Galerkin
Journal title :
Computer Methods in Applied Mechanics and Engineering
Serial Year :
2006
Journal title :
Computer Methods in Applied Mechanics and Engineering
Record number :
893605
Link To Document :
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