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integer, dimension(1), target | ivoid1 |
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integer, dimension(1, 1), target | ivoid2 |
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double precision, dimension(1), target | rvoid1 |
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double precision, dimension(1, 1), target | rvoid2 |
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double precision, dimension(1, 1, 1), target | rvoid3 |
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integer, dimension(:), pointer, save | itypfb |
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integer, dimension(:), allocatable | itrifb |
| indirection array allowing to sort the boundary faces according to their boundary condition type itypfb More...
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integer, dimension(:), pointer | izfppp |
| to identify boundary zones associated with boundary faces (specific physics models) More...
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integer, dimension(:), allocatable | idfstr |
| the index of the structure, (idfstr(ifac) where ifac is the index of the face), 0 if the face is not coupled to any structure. More...
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integer(c_int), pointer, save | nfpt1d |
| number of boundary faces which are coupled with a wall 1D thermal module. See the user subroutine cs_user_1d_wall_thermal More...
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integer(c_int), pointer, save | nfpt1t |
| global number of boundary faces which are coupled with a wall 1D thermal module. (ie sum over all ranks of nfpt1d) More...
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integer, save | ncepdc |
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integer, dimension(:), allocatable | icepdc |
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integer, dimension(:), allocatable | izcpdc |
| zones with head losses More...
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double precision, dimension(:,:), allocatable | ckupdc |
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double precision, dimension(:), allocatable | b_head_loss |
| Head loss factor of the fluid outside the domain, between infinity and the entrance (for ifrent boundary type). The default value is 0, dimensionless factor. The user may give a value in cs_user_boundary_conditions in the array rcodcl (ifac, ipr, 2). More...
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integer, save | ncetsm |
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integer, dimension(:), allocatable | icetsm |
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integer, dimension(:), allocatable | izctsm |
| zone where a mass source term is imposed. More...
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integer, dimension(:,:), allocatable | itypsm |
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double precision, dimension(:,:), allocatable | smacel |
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double precision, dimension(:), allocatable | gamcav |
| liquid-vapour mass transfer term for cavitating flows and its derivative with respect to pressure More...
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double precision, dimension(:), allocatable | dgdpca |
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integer, save | nfbpcd |
| number of the nfbpcd faces in which a condensation source terms is imposed. See ifbpcd and the user subroutine cs_user_boundary_mass_source_terms More...
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integer, dimension(:), allocatable | ifbpcd |
| list on the nfbpcd faces in which a condensation source terms is imposed. See ifbpcd and the user subroutine cs_user_boundary_mass_source_terms More...
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integer, dimension(:), allocatable | izftcd |
| zone where a condensation source terms is imposed. More...
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integer, dimension(:,:), allocatable | itypcd |
| type of condensation source terms for each variable More...
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double precision, dimension(:,:), allocatable | spcond |
| value of the condensation source terms for pressure. For the other variables, eventual imposed specific value. See the user subroutine cs_user_boundary_mass_source_terms More...
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double precision, dimension(:), allocatable | thermal_condensation_flux |
| value of the thermal flux for the condensation model. See the user subroutine cs_user_boundary_mass_source_terms More...
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double precision, dimension(:), allocatable | hpcond |
| value of the thermal exchange coefficient associated to the condensation model used. See the user subroutine cs_user_boundary_mass_source_terms More...
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double precision, dimension(:), allocatable | flthr |
| Specific 1D thermal model with implicit time scheme (only used with condensation modelling to the cold wall) flthr ! external heat flux used as flux conditions ! of the 1d thermal model (in unit ). More...
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double precision, dimension(:), allocatable | dflthr |
| dflthr ! external heat flux derivative used as flux conditions ! of the 1d thermal model (in unit ). More...
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integer, save | ncmast |
| number of the ncmast cells in which a condensation source terms is imposed. See lstmast list and the subroutine cs_user_metal_structures_source_terms More...
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integer, dimension(:), allocatable | ltmast |
| list on the ncmast cells in which a condensation source terms is imposed. See the user subroutine cs_user_metal_structures_source_terms. More...
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integer, dimension(:), allocatable | izmast |
| zone type where a condensation source terms is imposed to model the metal structures condensation on a volumic zone. More...
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integer, dimension(:,:), allocatable | itypst |
| type of condensation source terms for each variable More...
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double precision, dimension(:,:), allocatable | svcond |
| value of the condensation source terms for pressure associated to the metal structures modelling. For the other variables, eventual imposed specific value. See the user subroutine cs_user_metal_structures_source_terms. More...
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double precision, dimension(:), allocatable | flxmst |
| value of the thermal flux for the condensation model associated to the metal structures modelling. See the user subroutine cs_user_metal_structures_source_terms. More...
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double precision, dimension(:,:), pointer, save | tslagr |
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