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- W2119555119 abstract "The Raviart–Thomas finite elements provide an appropriate spatial discretization of the mixed-dual form of the diffusion equation. This discretization can then be coupled to an efficient solution method. The high performances achieved by such an approach triggered research on its possible generalization to the transport equation using a spherical harmonic (or PN) angular approximation. In view of the difficulty of developing a straightforward generalization within the mixed-dual framework, we here consider 2D non-conforming (i.e., allowing interface discontinuities) finite elements coupled to the second-order form of the transport equation. This non-conforming approach keeps the mixed-dual property of the relaxation of the flux interface continuity constraint. We investigate different non-conforming elements and compare them to the well-known Lagrangian conforming elements." @default.
- W2119555119 created "2016-06-24" @default.
- W2119555119 creator A5077196334 @default.
- W2119555119 date "2006-05-01" @default.
- W2119555119 modified "2023-10-17" @default.
- W2119555119 title "A non-conforming generalization of Raviart–Thomas elements to the spherical harmonic form of the even-parity neutron transport equation" @default.
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- W2119555119 doi "https://doi.org/10.1016/j.anucene.2006.02.009" @default.
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