OpenFOAM-4.x/applications/solvers
Henry Weller a25a449c9e GeometricField: Rationalized and simplified access to the dimensioned internal field
Given that the type of the dimensioned internal field is encapsulated in
the GeometricField class the name need not include "Field"; the type
name is "Internal" so

volScalarField::DimensionedInternalField -> volScalarField::Internal

In addition to the ".dimensionedInternalField()" access function the
simpler "()" de-reference operator is also provided to greatly simplify
FV equation source term expressions which need not evaluate boundary
conditions.  To demonstrate this kEpsilon.C has been updated to use
dimensioned internal field expressions in the k and epsilon equation
source terms.
2016-04-27 21:32:45 +01:00
..
basic vector::zero -> Zero 2016-04-16 18:34:41 +01:00
combustion GeometricField: Rationalized and simplified access to the dimensioned internal field 2016-04-27 21:32:45 +01:00
compressible GeometricField::dimensionedInternalField() -> GeometricField::dimensionedInternalFieldRef() 2016-04-26 16:29:43 +01:00
discreteMethods DSMC: Rationalization and addition of mapping support 2015-02-20 17:24:14 +00:00
DNS/dnsFoam Specialized dotInterpolate for the efficient calculation of flux fields 2016-04-06 20:20:53 +01:00
electromagnetics vector::zero -> Zero 2016-04-16 18:34:41 +01:00
financial/financialFoam Input of dimensionedScalars: update read-construction of dimensionedScalar in applications 2015-07-20 22:52:53 +01:00
heatTransfer vector::zero -> Zero 2016-04-16 18:34:41 +01:00
incompressible vector::zero -> Zero 2016-04-16 18:34:41 +01:00
lagrangian GeometricField: Rationalized and simplified access to the dimensioned internal field 2016-04-27 21:32:45 +01:00
multiphase GeometricField: Rationalized and simplified access to the dimensioned internal field 2016-04-27 21:32:45 +01:00
stressAnalysis vector::zero -> Zero 2016-04-16 18:34:41 +01:00