Commit Graph

477 Commits

Author SHA1 Message Date
e1e996746b GeometricField::internalField() -> GeometricField::internalFieldRef()
Non-const access to the internal field now obtained from a specifically
named access function consistent with the new names for non-canst access
to the boundary field boundaryFieldRef() and dimensioned internal field
dimensionedInternalFieldRef().

See also commit a4e2afa4b3
2016-04-30 14:25:21 +01:00
7155ef61ae functionObjectFile: Separated into functionObjectFile and functionObjectFiles
functionObjectFile provides basic directory, file and formatting functions
functionObjectFiles provides multi-file cache
2016-04-30 09:18:42 +01:00
53e13f10a5 Updated header 2016-04-29 17:18:33 +01:00
064d3046b9 List: Removed unused constructor from iterators
Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=2074
2016-04-29 17:17:45 +01:00
c8ff51b887 fireFoam: New additional controls switch "solvePyrolysisRegion"
provides optional control for solving the pyrolysis region.

Patch contributed by Karl Meredith, FMGlobal.
2016-04-28 12:54:17 +01:00
0a01f70653 Remove .internalField() clutter for const-access to the internal field 2016-04-28 12:37:31 +01:00
75ea76187b 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 a25a449c9e

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
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
f0d25904e4 GeometricField, volFields: Added experimental member function ".v()" and perfix operator "~"
both of which return the dimensionedInternalField for volFields only.

These will be useful in FV equation source term expressions which need
not evaluate boundary conditions.
2016-04-26 20:45:53 +01:00
cb9732204d Replaced StaticAssert with the C++11 equivalent static_assert 2016-04-26 20:44:55 +01:00
6fd4ce6cc3 Revert "src/postProcessing/functionObjects/field/Make/files: Corrected"
This reverts commit 73fe45cd27.
2016-04-26 20:33:45 +01:00
73fe45cd27 src/postProcessing/functionObjects/field/Make/files: Corrected 2016-04-26 20:31:58 +01:00
97f473ff0f GeometricField::dimensionedInternalField() -> GeometricField::dimensionedInternalFieldRef()
See also commit a4e2afa4b3
2016-04-26 16:29:43 +01:00
a4e2afa4b3 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
a8bf4be58a Standardized cell, patch, face and processor loop index names 2016-04-25 12:00:53 +01:00
8c4f6b8fcb Standardized cell, patch and face loop index names 2016-04-25 10:28:32 +01:00
6a27f7af46 boundaryField() -> boundaryFieldRef() 2016-04-24 22:07:37 +01:00
40ec00b575 Updated header 2016-04-23 23:38:10 +01:00
77cad08dfa boundaryField() -> boundaryFieldRef() 2016-04-23 23:37:53 +01:00
2c6b405043 fireFoam: Added optional hydrostatic initialization of the pressure and density
Also added the new prghTotalHydrostaticPressure p_rgh BC which uses the
hydrostatic pressure field as the reference state for the far-field
which provides much more accurate entrainment is large open domains
typical of many fire simulations.

The hydrostatic field solution is controlled by the optional entries in
the fvSolution.PIMPLE dictionary, e.g.

    hydrostaticInitialization yes;
    nHydrostaticCorrectors 5;

and the solver must also be specified for the hydrostatic p_rgh field
ph_rgh e.g.

    ph_rgh
    {
        $p_rgh;
    }

Suitable boundary conditions for ph_rgh cannot always be derived from
those for p_rgh and so the ph_rgh is read to provide them.

To avoid accuracy issues with IO, restart and post-processing the p_rgh
and ph_rgh the option to specify a suitable reference pressure is
provided via the optional pRef file in the constant directory, e.g.

    dimensions      [1 -1 -2 0 0 0 0];
    value           101325;

which is used in the relationship between p_rgh and p:

    p = p_rgh + rho*gh + pRef;

Note that if pRef is specified all pressure BC specifications in the
p_rgh and ph_rgh files are relative to the reference to avoid round-off
errors.

For examples of suitable BCs for p_rgh and ph_rgh for a range of
fireFoam cases please study the tutorials in
tutorials/combustion/fireFoam/les which have all been updated.

Henry G. Weller
CFD Direct Ltd.
2016-04-23 10:04:39 +01:00
6a9101990e JohnsonJacksonSchaefferFrictionalStress: Updated I2D expression 2016-04-22 15:13:45 +01:00
6edac8f9ca reactingTwoPhaseEulerFoam: Corrected kineticTheory frictional stress at walls
Patch contributed by Juho Peltola, VTT

The new JohnsonJacksonSchaefferFrictionalStress model is included and
the LBend tutorial case to demonstrate the need for the changes to the
frictional stress models.

Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=2058
2016-04-22 14:25:58 +01:00
f33b40c202 foamCalcFunctions: Avoid the inclusion of fvCFD.H 2016-04-22 14:21:50 +01:00
0da5b0f989 Updated headers 2016-04-21 21:07:28 +01:00
d327a3f431 utilities/mesh/manipulation: Rationalized "End" message 2016-04-21 21:06:45 +01:00
1c2c1d83e7 transformPoints: Added "End" message
Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=2059
2016-04-21 21:05:47 +01:00
76e22b44ea applications/test/rigidBodyDynamics/pendulumAndSpring: Another slightly more complex test 2016-04-17 15:47:03 +01:00
287603474a vector::zero -> Zero 2016-04-16 18:34:41 +01:00
fc32d53828 quaternion/septernion: Added multi- quaternion/septernion averaging
Using method based on
http://ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/20070017872.pdf
but simplified for the case where the quaternions are similar.
2016-04-16 15:59:05 +01:00
6a5d5e903e septernion: Changed definition of the forward transformation for consistency with spatialTransform
inline Foam::vector Foam::septernion::transformPoint(const vector& v) const
{
    return r().transform(v - t());
}

Now there is a 1:1 correspondence between septernion and
spatialTransform and a septernion constructor from spatialTransform
provided.

Additionally "septernion::transform" has been renamed
"septernion::transformPoint" to clarify that it transforms coordinate
points rather than displacements or other relative vectors.
2016-04-15 11:27:18 +01:00
bc70e36915 rigidBodyDynamics: Removed quaternion counter and index: 'nw', 'wIndex'
Replaced with 'unitQuaterion()' virtual function to indicate if the
joint uses a unit quaternion to represent rotation.
2016-04-12 22:17:52 +01:00
df1cb90dc6 rigidBodyDynamics: Simplify handling of quaternions by maintaining a unit quaternion in the joint state field 'q'
'w' is now obtained from 'v' using the relation w = sqrt(1 - |sqr(v)|)
and 'v' is stored in the joint state field 'q' and integrated in the
usual manner but corrected using quaternion transformations.
2016-04-12 21:44:34 +01:00
4a7f5ed19a applications/test/rigidBodyDynamics/sphericalJoint: Test for the quaternion-based spherical joint 2016-04-12 16:37:52 +01:00
b2563a8f1b applications/test/rigidBodyDynamics/spring: Updated comment 2016-04-12 16:37:26 +01:00
ab6fcff621 applications/test/rigidBodyDynamics/spring: Correct typo 2016-04-12 16:16:30 +01:00
9e24a9b5e2 rigidBodyDynamics: Simplified the interface to the solvers 2016-04-12 12:57:31 +01:00
c07bc87f95 rigidBodyDynamics/rigidBodySolvers: Added run-time selectable solvers to integrate the rigid-body motion
Currently supported solvers: symplectic, Newmark, CrankNicolson

The symplectic solver should only be used if iteration over the forces
and body-motion is not required.  Newmark and CrankNicolson both require
iteration to provide 2nd-order behavior.

See applications/test/rigidBodyDynamics/spring for an example of the
application of the Newmark solver.

This development is sponsored by Carnegie Wave Energy Ltd.
2016-04-12 11:33:20 +01:00
81eec80d5d rigidBodyDynamics/rigidBodyModelState: New class to hold the motion state of the rigid-body model
This is a more convenient way of maintaining the state or multiple
states (for higher-order integration), storing, retrieving and passing
between processors.
2016-04-11 19:01:16 +01:00
1177554029 rigidBodyDynamics/restraints: Complete dictionary IO 2016-04-11 11:45:51 +01:00
c019071604 rigidBodyDynamics: Added support for restraints and a linear spring with damper
applications/test/rigidBodyDynamics/spring: Test of the linear spring with damper restraint
Damped simple harmonic motion of a weight on a spring is simulated and
the results compared with analytical solution

    Test-spring
    gnuplot spring.gnuplot
    evince spring.eps

This development is sponsored by Carnegie Wave Energy Ltd.
2016-04-10 23:12:07 +01:00
7d757a7960 applications/test/rigidBodyDynamics/pendulum: Cleanup 2016-04-10 23:07:23 +01:00
48427f7a4e applications/test/rigidBodyDynamics/pendulum/pendulum: Corrected joint type 2016-04-08 18:03:51 +01:00
8df5ca61d2 rigidBodyDynamics/bodies/jointBody: Special body to support elements of composite joints 2016-04-08 17:16:01 +01:00
0c48b153de rigidBodyModel: Added operator<<(Ostream&, const rigidBodyModel&) 2016-04-08 17:02:02 +01:00
33a97bb848 rigidBodyDynamics: Simplified the IO of bodies 2016-04-08 16:56:48 +01:00
b701ec9f3d rigidBodyDynamics/bodies: Complete set of clone functions to support copy construction and assignment 2016-04-07 23:04:17 +01:00
8ffd700ca6 rigidBodyDynamics: Added dictionary-based IO of the rigidBodyModel 2016-04-07 21:47:08 +01:00
fda9aadb3a 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
19a93cc696 applications/test/rigidBodyDynamics/pendulum: Simplified using sphere constructor and body lookup by name 2016-04-04 17:08:20 +01:00
09ba40bf26 Updated header 2016-04-04 13:53:51 +01:00