Commit Graph

200 Commits

Author SHA1 Message Date
f73e5be2b8 ENH: overset: adjust fringe for interFoam 2017-08-10 14:42:39 +01:00
6a0a8b99b3 STYLE: use ""_deg user-literal for degrees to radians conversion
ENH: add degToRad() multiplier (useful for scalar fields)

- use degToRad() functions throughout instead of scattered local solutions
2017-07-04 15:36:46 +02:00
d415bf77bf Merge branch 'develop' of develop.openfoam.com:Development/OpenFOAM-plus into develop 2017-06-26 13:33:19 +01:00
a22d9fe760 BUG: correctPhi: reference cells could become -1. Part fix for #507. 2017-06-26 09:52:26 +01:00
ff9d2c3a9c ENH: Updated frozenFlow option for interFoam and interIsoFoam 2017-06-23 11:43:55 +01:00
4418c192c4 Deleting alphaEqn.H from overInterDyMFoam 2017-06-20 13:42:10 -07:00
6ff341b5f5 Adding alphaEqn.H with interpolation method.
Adding special alphaCourantNo for overlaping
Adding bounded term to UEq.H for overInterDyMFoam
Changing to NO_WRITE for the cellMask field
Changing twoSimpleRotors tutorial to open domain
2017-06-19 11:10:19 -07:00
fd665b4a3c ENH: overset: Initial release of overset capability.
Adds overset discretisation to selected physics:
- diffusion : overLaplacianDyMFoam
- incompressible steady : overSimpleFoam
- incompressible transient : overPimpleDyMFoam
- compressible transient: overRhoPimpleDyMFoam
- two-phase VOF: overInterDyMFoam

The overset method chosen is a parallel, fully implicit implementation
whereby the interpolation (from donor to acceptor) is inserted as an
adapted discretisation on the donor cells, such that the resulting matrix
can be solved using the standard linear solvers.

Above solvers come with a set of tutorials, showing how to create and set-up
simple simulations from scratch.
2017-06-14 09:51:02 +01:00
2e9bead519 MRG: merged develop line back into integration branch 2017-05-18 11:11:12 +01:00
91b90da4f3 Integrated Foundation code to commit 104aac5 2017-05-17 16:35:18 +01:00
982c28d545 BUG: Gitlab issue 442. Resetting allLambda for phases in the alphaEqns.H for interMixingFoam 2017-04-05 13:58:45 -07:00
1f5b9dbbcf tutorials/multiphase: Removed unnecessary specification of name and dimensions for transport properties 2017-03-31 17:11:30 +01:00
45381b1085 MRG: Integrated Foundation code to commit 19e602b 2017-03-28 11:30:10 +01:00
dcb1a95e35 MRG: Integrated Foundation code to commit 7d6845d 2017-03-23 14:33:33 +00:00
436ec1cf1f MRG: Integrated Foundation code to commit ba4dbed 2017-03-23 12:11:49 +00:00
86dc955605 interFoam family of solvers: Improved Crank-Nicolson implementation
Fewer limiter iterations are now required to obtain sufficient boundedness and
restart is more consistent.
2017-03-06 17:34:10 +00:00
b167c95f19 compressibleInterFoam: Completed LTS and semi-implicit MULES support
Now the interFoam and compressibleInterFoam families of solvers use the same
alphaEqn formulation and supporting all of the MULES options without
code-duplication.

The semi-implicit MULES support allows running with significantly larger
time-steps but this does reduce the interface sharpness.
2017-02-09 17:31:57 +00:00
ba4eefae1d interFoam, interDyMFoam: Removed duplicate include 2017-02-08 20:47:59 +00:00
3879cf48fb interMixingFoam: Renamed alphaEqns.H and alphaEqnsSubCycle.H for consistency with interFoam 2017-02-08 20:46:31 +00:00
8264c3b988 interDyMFoam: Reinstate alphaPhiCorr0 for moving meshes without topology change 2017-02-07 09:59:19 +00:00
8f7228d6f3 interDyMFoam: delete alphaPhiCorr0 if the mesh changes
The previous time-step compression flux is not valid/accurate on the new mesh
and it is better to re-calculate it rather than map it from the previous mesh to
the new mesh.
2017-01-25 11:54:12 +00:00
8701c57ecb BUG: Removed call to topoChanging(false) in interDyMFoam and compressibleInterDyMFoam - see #363 and 03db8627 2016-12-23 09:09:30 +00:00
b53389edef GIT: Resolved conflict merging master into develop 2016-12-16 17:10:38 +00:00
6baf1d7d8f Merge branch 'integration-ihcantabria' into 'develop'
Integration of ihcantabria wave models

Integration of functionality produced by The Environmental Hydraulics Institute "IHCantabria" (http://www.ihcantabria.com/en/)

- Original code introduced in commit 95e9467e
- Restructured and updated by OpenCFD into a new `waveModels` library available to the interFoam family of solvers

Main source:
`$FOAM_SRC/waveModels`

Tutorials:
`$FOAM_TUTORIALS/multiphase/interFoam/waveExample*`

Capabilities include:
- Wave generation
- Solitary wave using Boussinesq theory
- Cnoidal wave theory
- StokesI, StokesII, StokesV wave theory
    
- Active wave absorption at the inflow/outflow boundaries based on shallow water theory

IHCantabria Authors:
- Javier Lopez Lara (jav.lopez@unican.es)
- Gabriel Barajas (barajasg@unican.es)
- Inigo Losada (losadai@unican.es)

See merge request !88
2016-12-15 13:38:13 +00:00
bf9fcba645 ENH: Added waveModels library to interFoam family of solvers 2016-12-15 13:07:00 +00:00
11479c51d7 ENH: Changes in handling topological changes in VOF solvers
1) Using divU instead of fvc::absolute(phi,U) in TEqn as the latter uses latest time meshPhi which is inconsistent
2) Adding fvc::interpolate(U) when topo changes
3) in pEq for compressible dgdt is updated using the latest rho1 and rho2 after compressible effects are considered
2016-12-07 12:57:32 -08:00
143e99194f ENH: Adding functionality to scalarTransport FO and residence time tutorials for VOF
and single phase cases. Registration of the compressed flux in interFoam as it is
needed for the FO if used.
2016-11-21 09:21:45 -08:00
8ff2e8f14d BUG: Corrected assignment to reference object 2016-10-07 12:26:09 +01:00
bd0e982d99 MRG: Initial commit after latest Foundation merge 2016-09-30 11:16:28 +01:00
9fbd612672 GIT: Initial state after latest Foundation merge 2016-09-20 14:49:08 +01:00
b32bd3f295 solvers: Moved createRDeltaT.H into createFields.H so that it is available with the -postProcess option
Required to support LTS with the -postProcess option with sub-models dependent on ddt
terms during construction, in particular reactingTwoPhaseEulerFoam.
2016-09-19 22:08:39 +01:00
7dca6b6a21 applications/solvers: Added -postProcess option
See also commit cc455173ff
2016-05-09 14:08:15 +01:00
38916e66bb applications/solvers/multiphase: Added -postProcess option
See also commit cc455173ff
2016-05-08 20:57:08 +01:00
fce8d0310d interFoam: Added -postProcess option
See also commit cc455173ff
Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=1301
2016-05-08 14:32:23 +01:00
81f31acbb3 Updated headers 2016-04-30 21:53:19 +01:00
3c053c2fe6 GeometricField: Renamed internalField() -> primitiveField() and dimensionedInternalField() -> internalField()
These new names are more consistent and logical because:

primitiveField():
primitiveFieldRef():
    Provides low-level access to the Field<Type> (primitive field)
    without dimension or mesh-consistency checking.  This should only be
    used in the low-level functions where dimensional consistency is
    ensured by careful programming and computational efficiency is
    paramount.

internalField():
internalFieldRef():
    Provides access to the DimensionedField<Type, GeoMesh> of values on
    the internal mesh-type for which the GeometricField is defined and
    supports dimension and checking and mesh-consistency checking.
2016-04-30 21:40:09 +01:00
ccd958a8f1 GeometricField::dimensionedInteralFieldRef() -> GeometricField::ref()
In order to simplify expressions involving dimensioned internal field it
is preferable to use a simpler access convention.  Given that
GeometricField is derived from DimensionedField it is simply a matter of
de-referencing this underlying type unlike the boundary field which is
peripheral information.  For consistency with the new convention in
"tmp"  "dimensionedInteralFieldRef()" has been renamed "ref()".
2016-04-30 18:43:51 +01:00
ea5401c770 GeometricField::GeometricBoundaryField -> GeometricField::Boundary
When the GeometricBoundaryField template class was originally written it
was a separate class in the Foam namespace rather than a sub-class of
GeometricField as it is now.  Without loss of clarity and simplifying
code which access the boundary field of GeometricFields it is better
that GeometricBoundaryField be renamed Boundary for consistency with the
new naming convention for the type of the dimensioned internal field:
Internal, see commit 4a57b9be2e

This is a very simple text substitution change which can be applied to
any code which compiles with the OpenFOAM-dev libraries.
2016-04-28 07:22:02 +01:00
dc2951ca2f GeometricField::dimensionedInternalField() -> GeometricField::dimensionedInternalFieldRef()
See also commit 22f4ad32b1
2016-04-26 16:29:43 +01:00
22f4ad32b1 Completed boundaryField() -> boundaryFieldRef()
Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=1938

Because C++ does not support overloading based on the return-type there
is a problem defining both const and non-const member functions which
are resolved based on the const-ness of the object for which they are
called rather than the intent of the programmer declared via the
const-ness of the returned type.  The issue for the "boundaryField()"
member function is that the non-const version increments the
event-counter and checks the state of the stored old-time fields in case
the returned value is altered whereas the const version has no
side-effects and simply returns the reference.  If the the non-const
function is called within the patch-loop the event-counter may overflow.
To resolve this it in necessary to avoid calling the non-const form of
"boundaryField()" if the results is not altered and cache the reference
outside the patch-loop when mutation of the patch fields is needed.

The most straight forward way of resolving this problem is to name the
const and non-const forms of the member functions differently e.g. the
non-const form could be named:

    mutableBoundaryField()
    mutBoundaryField()
    nonConstBoundaryField()
    boundaryFieldRef()

Given that in C++ a reference is non-const unless specified as const:
"T&" vs "const T&" the logical convention would be

    boundaryFieldRef()
    boundaryFieldConstRef()

and given that the const form which is more commonly used is it could
simply be named "boundaryField()" then the logical convention is

    GeometricBoundaryField& boundaryFieldRef();

    inline const GeometricBoundaryField& boundaryField() const;

This is also consistent with the new "tmp" class for which non-const
access to the stored object is obtained using the ".ref()" member function.

This new convention for non-const access to the components of
GeometricField will be applied to "dimensionedInternalField()" and "internalField()" in the
future, i.e. "dimensionedInternalFieldRef()" and "internalFieldRef()".
2016-04-25 16:16:05 +01:00
fd9d801e2d GIT: Initial commit after latest foundation merge 2016-04-25 11:40:48 +01:00
77b03e2e0c Specialized dotInterpolate for the efficient calculation of flux fields
e.g. (fvc::interpolate(HbyA) & mesh.Sf()) -> fvc::flux(HbyA)

This removes the need to create an intermediate face-vector field when
computing fluxes which is more efficient, reduces the peak storage and
improved cache coherency in addition to providing a simpler and cleaner
API.
2016-04-06 20:20:53 +01:00
7ba41e0095 Removed duplicate, inconsistent and spurious comments in .C files 2016-02-29 18:33:54 +00:00
cd852be3da OpenFOAM: Updated all libraries, solvers and utilities to use the new const-safe tmp
The deprecated non-const tmp functionality is now on the compiler switch
NON_CONST_TMP which can be enabled by adding -DNON_CONST_TMP to EXE_INC
in the Make/options file.  However, it is recommended to upgrade all
code to the new safer tmp by using the '.ref()' member function rather
than the non-const '()' dereference operator when non-const access to
the temporary object is required.

Please report any problems on Mantis.

Henry G. Weller
CFD Direct.
2016-02-26 17:31:28 +00:00
8b71babfdd interFoam, interMixingFoam, interPhaseChangeFoam: construct rho with calculated BCs
Avoids problems with inherited complex BCs for which the controlling
fields and parameters are not initialized.
2016-02-18 21:26:25 +00:00
fc2ce73723 Solvers: Added support for extrapolated pressure boundary conditions
The boundary conditions of HbyA are now constrained by the new "constrainHbyA"
function which applies the velocity boundary values for patches for which the
velocity cannot be modified by assignment and pressure extrapolation is
not specified via the new
"fixedFluxExtrapolatedPressureFvPatchScalarField".

The new function "constrainPressure" sets the pressure gradient
appropriately for "fixedFluxPressureFvPatchScalarField" and
"fixedFluxExtrapolatedPressureFvPatchScalarField" boundary conditions to
ensure the evaluated flux corresponds to the known velocity values at
the boundary.

The "fixedFluxPressureFvPatchScalarField" boundary condition operates
exactly as before, ensuring the correct flux at fixed-flux boundaries by
compensating for the body forces (gravity in particular) with the
pressure gradient.

The new "fixedFluxExtrapolatedPressureFvPatchScalarField" boundary
condition may be used for cases with or without body-forces to set the
pressure gradient to compensate not only for the body-force but also the
extrapolated "HbyA" which provides a second-order boundary condition for
pressure.  This is useful for a range a problems including impinging
flow, extrapolated inlet conditions with body-forces or for highly
viscous flows, pressure-induced separation etc.  To test this boundary
condition at walls in the motorBike tutorial case set

    lowerWall
    {
        type            fixedFluxExtrapolatedPressure;
    }

    motorBikeGroup
    {
        type            fixedFluxExtrapolatedPressure;
    }

Currently the new extrapolated pressure boundary condition is supported
for all incompressible and sub-sonic compressible solvers except those
providing implicit and tensorial porosity support.  The approach will be
extended to cover these solvers and options in the future.

Note: the extrapolated pressure boundary condition is experimental and
requires further testing to assess the range of applicability,
stability, accuracy etc.

Henry G. Weller
CFD Direct Ltd.
2016-02-13 17:48:26 +00:00
56fa7c0906 Update code to use the simpler C++11 template syntax removing spaces between closing ">"s 2016-01-10 22:41:16 +00:00
8f1d043364 GIT: Resolved conflict 2015-12-09 09:32:38 +00:00
b594d73c65 ENH: Solvers - updated group documentation 2015-12-03 22:05:55 +00:00
736621b945 fvOptions: Reorganized and updated to simplify use in sub-models and maintenance
fvOptions are transferred to the database on construction using
fv::options::New which returns a reference.  The same function can be
use for construction and lookup so that fvOptions are now entirely
demand-driven.

The abstract base-classes for fvOptions now reside in the finiteVolume
library simplifying compilation and linkage.  The concrete
implementations of fvOptions are still in the single monolithic
fvOptions library but in the future this will be separated into smaller
libraries based on application area which may be linked at run-time in
the same manner as functionObjects.
2015-12-02 11:49:52 +00:00