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-rw-r--r--doc/IGE351/SectDmacrolib.tex10
1 files changed, 5 insertions, 5 deletions
diff --git a/doc/IGE351/SectDmacrolib.tex b/doc/IGE351/SectDmacrolib.tex
index f00fb19..2b5dbb0 100644
--- a/doc/IGE351/SectDmacrolib.tex
+++ b/doc/IGE351/SectDmacrolib.tex
@@ -83,10 +83,10 @@ I_{\rm step} = \left\{
I_{\rm df} = \left\{
\begin{array}{ll}
0 & \textrm{no discontinuity factor information}\\
-1 & \textrm{multigroup boundary current information is available}\\
-2 & \textrm{boundary flux information (see \Sect{macroADF}) is available}\\
-3 & \textrm{discontinuity factor information (see \Sect{macroADF}) is available}\\
-4 & \textrm{matrix ($G \times G$) discontinuity factor information (see \Sect{macroADF}) is available.}
+1 & \textrm{multigroup boundary current information is recovered}\\
+2 & \textrm{boundary gap flux information (see \Sect{macroADF}) is recovered}\\
+3 & \textrm{ADF information (see \Sect{macroADF}) is recovered}\\
+4 & \textrm{recover matrix ADF information.}
\end{array} \right.
\end{displaymath}
\item Adjoint macrolib flag $I_{\rm adj}=\mathcal{S}^{M}_{13}$:
@@ -588,7 +588,7 @@ normalization with the {\sl superhomog\'en\'eisation} (SPH) method.
a \moc{VOID} or \moc{ALBE} boundary condition is set in DRAGON.}
\OptRealEnr
{AVG\_FLUX\blank{5}}{$N_{m},G$}{$I_{\rm df} = 2$}{}
- {Averaged fluxes in the complete assembly. Used as denominator to compute the ADF in an homogeneous assembly.}
+ {Averaged fluxes in the complete assembly. Used as denominator to compute the ADF in an homogeneous assembly or to perform Selengut normalization.}
\OptRealVar
{\listedir{type}}{$N_{m},G$}{$I_{\rm df} = 2,\, 3$}{}
{Averaged surfacic fluxes ($I_{\rm df} = 2$) or discontinuity factors ($I_{\rm df} = 3$) in a material mixture. Name {\sl type} is a component of