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When Discrete ordinates method is selected, Opaque Surface (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) and Continuity on Interior Boundary (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) are automatically added as default features.
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When P1 approximation is selected, Opaque Surface (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) is automatically added as a default feature and both this and Incident Intensity (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) are made available from the Physics ribbon toolbar (Windows users), Physics context menu (Mac or Linux users), or the context menu (all users). Continuity on Interior Boundary (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) is not available.
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The choice of Radiation discretization method also offers different settings for the Participating Medium (Radiation in Participating Medium Interface) (all methods), Opaque Surface (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) (P1 approximation), and Incident Intensity (Radiation in Participating Medium and Radiation in Absorbing-Scattering Medium Interfaces) (P1 approximation) nodes.
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The Level Symmetric Even (the default), Level Symmetric Hybrid, and Equal Weight Odd sets are SN approximations. Depending on the set and the order selected in the Discrete ordinates method list, different moment conditions are satisfied. In 3D, S2, S4, S6, and S8 generate 8, 24, 48, and 80 directions, respectively. In 2D, S2, S4, S6, and S8 generate 4, 12, 24, and 40 directions, respectively.
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The Quasi-uniform weight approximation discretizes the angular space by using a reference octahedron with 8 triangular faces, further discretized in function of the order of the method. This corresponds to a TN approximation, for which 8N2weights are computed at order N.
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