Commit Graph

92 Commits

Author SHA1 Message Date
91b90da4f3 Integrated Foundation code to commit 104aac5 2017-05-17 16:35:18 +01:00
1805b3c98f radiationModel: Added "he" argument to the "Sh" function
for consistency with the other energy sources.
2017-04-13 13:57:33 +01:00
9fbd612672 GIT: Initial state after latest Foundation merge 2016-09-20 14:49:08 +01:00
98f69d417f applications/solvers/heatTransfer: Added -postProcess option
See also commit cc455173ff
2016-05-09 16:28:48 +01:00
30a18e31ae applications/solvers: Moved createMRF.H into createField.H
to ensure MRF functionality is available for the -postProcess option
2016-05-09 16:06:12 +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
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
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
23b99b5e3b ENH: Adding pRef handling in pEqn.H for incompressible eqOfState in buoyantSimpleFoam 2015-12-17 15:02:01 -08:00
2647d178fa solvers: Change from pure RAS to any turbulence model
Provides support for running laminar.
2015-12-16 10:13:09 +00:00
b7444b8587 BUG: Add compressible bool for closed volume domains 2015-12-15 10:15:15 -08:00
519be48847 ENH: Adding genereal turbulent constructor 2015-12-14 08:41:05 -08:00
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
3dfe844d9a applications/solvers: Added call to validate the turbulence model after construction
See also commit 52d83407f3
2015-12-01 10:25:38 +00:00
d047107489 chtMultiRegionFoam, chtMultiRegionSimpleFoam, buoyantPimpleFoam, buoyantSimpleFoam: Added support for hRef 2015-11-30 16:29:10 +00:00
d968ee30e1 TurbulenceModels: Improved instantiation of single-phase models in solvers
Simplifies lookup of RAS or LES models
2015-11-18 21:10:03 +00:00
0fb6a01280 fluxRequired: Added setFluxRequired function to fvSchemes class
Added calls to setFluxRequired for p, p_rgh etc. in all solvers which
avoids the need to add fluxRequired entries in fvSchemes dictionaries.
2015-07-15 21:57:16 +01:00
d0f15d4e3c EEqn: Added rho*(U&g) source term
Generally this term has a VERY small effect on temperature, it is only
important for low-speed buoyancy-dominated flows.

Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=1755

See also http://cfd.direct/openfoam/energy-equation/
2015-07-01 10:53:37 +01:00
c3ee2348a6 MRF: Separate MRF from fvOptions
fvOptions does not have the appropriate structure to support MRF as it
is based on option selection by user-specified fields whereas MRF MUST
be applied to all velocity fields in the particular solver.  A
consequence of the particular design choices in fvOptions made it
difficult to support MRF for multiphase and it is easier to support
frame-related and field related options separately.

Currently the MRF functionality provided supports only rotations but
the structure will be generalized to support other frame motions
including linear acceleration, SRF rotation and 6DoF which will be
run-time selectable.
2015-05-29 23:35:43 +01:00
945c4c3d18 fluidThermo: Add compressibleTransportModel as base-class
Needed to create generic compressible turbulence model library
2015-02-17 17:25:26 +00:00
fe8c5ff636 Applications: use pimpleControl.dict() and simpleControl.dict() instead of looking-up the sub-dict 2015-02-09 22:15:26 +00:00
2aec249647 Updated the whole of OpenFOAM to use the new templated TurbulenceModels library
The old separate incompressible and compressible libraries have been removed.

Most of the commonly used RANS and LES models have been upgraded to the
new framework but there are a few missing which will be added over the
next few days, in particular the realizable k-epsilon model.  Some of
the less common incompressible RANS models have been introduced into the
new library instantiated for incompressible flow only.  If they prove to
be generally useful they can be templated for compressible and
multiphase application.

The Spalart-Allmaras DDES and IDDES models have been thoroughly
debugged, removing serious errors concerning the use of S rather than
Omega.

The compressible instances of the models have been augmented by a simple
backward-compatible eddyDiffusivity model for thermal transport based on
alphat and alphaEff.  This will be replaced with a separate run-time
selectable thermal transport model framework in a few weeks.

For simplicity and ease of maintenance and further development the
turbulent transport and wall modeling is based on nut/nuEff rather than
mut/muEff for compressible models so that all forms of turbulence models
can use the same wall-functions and other BCs.

All turbulence model selection made in the constant/turbulenceProperties
dictionary with RAS and LES as sub-dictionaries rather than in separate
files which added huge complexity for multiphase.

All tutorials have been updated so study the changes and update your own
cases by comparison with similar cases provided.

Sorry for the inconvenience in the break in backward-compatibility but
this update to the turbulence modeling is an essential step in the
future of OpenFOAM to allow more models to be added and maintained for a
wider range of cases and physics.  Over the next weeks and months more
turbulence models will be added of single and multiphase flow, more
additional sub-models and further development and testing of existing
models.  I hope this brings benefits to all OpenFOAM users.

Henry G. Weller
2015-01-21 19:21:39 +00:00
a92a04f18d Updated options files for new location of radiation lnInclude directory 2015-01-11 22:27:36 +00:00
08baa6eda6 fixedFluxPressure BC: the snGrad is now pushed into the BC from pEqn.H rather than being evaluated in the BC 2013-09-11 00:10:00 +01:00
51f085faa5 Rewrite of ddtPhiCorr - ddtCorr and density-weight HbyA on compressible solvers.
For DyM solvers phiAbs is replaced by Uf but this conversion is currently not complete
2013-09-09 12:41:20 +01:00
046f740f0e Renamed relativeFlux -> makeRelative and absoluteFlux -> makeAbsolute 2013-08-20 15:40:00 +01:00
c8ea8198cd STYLE: Updated solver header documentation 2013-03-27 15:49:58 +00:00
0a8bae1f54 ENH: Adding changes from 2.2.0 2013-03-06 15:41:24 +00:00
f69816fa38 ENH: Updated buoyantSimpleFoam to use rhoThermo 2013-01-31 15:36:41 +00:00
d2b84dc511 ENH: Updated fieldSources->fvOptions for solvers 2013-01-08 09:38:01 +00:00
72ab425a77 ENH: Updated instantiation of sources by solvers 2012-12-10 15:21:37 +00:00
ad1246515a ENH: Updated sources for heatTransfer solvers 2012-12-10 10:59:17 +00:00
cf6956f119 ENH: Removed unused #include header 2012-12-06 14:22:23 +00:00
8f76549b1d ENH: buoyantSimpleFoam - updated equation sources 2012-12-06 13:30:14 +00:00
577ef5742d ENH: buoyantPimpleFoam - updated equation sources 2012-12-06 13:30:04 +00:00
b3a2897729 ENH: Replaced buoyantSimpleRadiationFoam by buoyantSimpleFoam - radiation now included by default 2012-12-06 13:06:30 +00:00
701f5680c8 buoyantSimpleRadiationFoam: Added MRF zones 2012-11-05 15:31:30 +00:00
286971f65e ENH: Added MRF functionality to buoyantSimpleFoam 2012-10-29 17:11:08 +00:00
dbe48b482c Thermodynamics: Changed all eEqn to EEqn and reformulated to conserve E in sonic solvers
To support these changes the need for "Sp" corrections on div-terms has been
eliminated by introducing a "bounded" convection scheme which subtracts the Sp
term from the selected scheme.  The equivalent will be needed for the ddt term.

A warning message is generated for steady-state solvers in which the "bounded"
scheme is not selected for the convection terms.
2012-09-19 12:49:07 +01:00
830c0ef382 Thermodynamyics: rename basicThermo -> fluidThermo and veryBasicThermo -> basicThermo 2012-08-23 14:13:13 +01:00
dead8ec098 Thermodynamics: Rationalization
At the specie level:
    hs = sensible enthalpy
    ha = absolute (what was total) enthalpy
    es = sensibly internal energy
    ea = absolute (what was total) internal energy

At top-level
    Rename total enthalpy h -> ha
    Rename sensible enthalpy hs -> h

Combined h, hs, e and es thermo packages into a single structure.

Thermo packages now provide "he" function which may return either enthalpy or
internal energy, sensible or absolute according to the run-time selected form

alphaEff now returns the effective diffusivity for the particular energy which
the thermodynamics package is selected to solve for.
2012-05-30 15:21:32 +01:00
63da3e9afc Thermodynamics: Rationalization
At the specie level:
    hs = sensible enthalpy
    ha = absolute (what was total) enthalpy
    es = sensibly internal energy
    ea = absolute (what was total) internal energy

At top-level
    Rename total enthalpy h -> ha
    Rename sensible enthalpy hs -> h

Combined h, hs, e and es thermo packages into a single structure.

Thermo packages now provide "he" function which may return either enthalpy or
internal energy, sensible or absolute according to the run-time selected form

alphaEff now returns the effective diffusivity for the particular energy which
the thermodynamics package is selected to solve for.
2012-05-30 15:19:38 +01:00
28762dc468 Removed trailing whitespace 2012-04-19 14:17:30 +01:00
70595a9a61 Buoyant solvers: changed the sign of phig to be consistent with the sign of the buoyancy force on the RHS of UEqn 2012-04-19 10:08:59 +01:00
0a8392ffd5 BUG: Coding error - missing ';' 2012-03-05 12:39:11 +00:00
912a20b7a3 ENH: Propagated caching of HbyA across solvers 2012-03-02 18:15:54 +00:00
96068a670d Thermodynamics: Changed h-eqn to conserve total energy 2011-11-22 17:54:13 +00:00