diff --git a/src/TurbulenceModels/turbulenceModels/LES/LESeddyViscosity/LESeddyViscosity.H b/src/TurbulenceModels/turbulenceModels/LES/LESeddyViscosity/LESeddyViscosity.H index 1a71e556bfbed5ee52cef755fc2d64ac736cab67..a8d82752f5f488492371ea1d1dedd2780ca5812c 100644 --- a/src/TurbulenceModels/turbulenceModels/LES/LESeddyViscosity/LESeddyViscosity.H +++ b/src/TurbulenceModels/turbulenceModels/LES/LESeddyViscosity/LESeddyViscosity.H @@ -49,7 +49,7 @@ namespace LESModels { /*---------------------------------------------------------------------------*\ - Class LESeddyViscosity Declaration + Class LESeddyViscosity Declaration \*---------------------------------------------------------------------------*/ template<class BasicTurbulenceModel> diff --git a/src/fvOptions/sources/derived/solidificationMeltingSource/solidificationMeltingSource.H b/src/fvOptions/sources/derived/solidificationMeltingSource/solidificationMeltingSource.H index 552c3d8531a4a50fd60e496abb44a550b9d9dcd0..14a34a82f52e94350cc110a4224b12edceb9b625 100644 --- a/src/fvOptions/sources/derived/solidificationMeltingSource/solidificationMeltingSource.H +++ b/src/fvOptions/sources/derived/solidificationMeltingSource/solidificationMeltingSource.H @@ -34,13 +34,12 @@ Description phase change is added as an enthalpy contribution. Based on the references: - - 1. V.R. Voller and C. Prakash, A fixed grid numerical modelling - methodology for convection-diffusion mushy phase-change problems, - Int. J. Heat Mass Transfer 30(8):17091719, 1987. - 2. C.R. Swaminathan. and V.R. Voller, A general enthalpy model for - modeling solidification processes, Metallurgical Transactions - 23B:651664, 1992. + -# V.R. Voller and C. Prakash, A fixed grid numerical modelling + methodology for convection-diffusion mushy phase-change problems, + Int. J. Heat Mass Transfer 30(8):17091719, 1987. + -# C.R. Swaminathan. and V.R. Voller, A general enthalpy model for + modeling solidification processes, Metallurgical Transactions + 23B:651664, 1992. The model generates a field \c \<name\>:alpha1 which can be visualised to to show the melt distribution as a fraction [0-1]