Commit Graph

129 Commits

Author SHA1 Message Date
sergio
b62306ddc5 ENH: Adding regionFaModels library to solvers 2021-07-16 16:38:06 +00:00
Mark Olesen
6a390f6ad1 COMP: remove includes of defunct locations (fixes #2143) 2021-06-29 13:43:44 +02:00
Mark Olesen
b2bded48c9 STYLE: use Time::printExecutionTime() method
- makes format of ExecutionTime = ... output configurable (#788)
  and reduces code clutter.

STYLE: more consistent line-breaks after "End" tag
2020-08-07 09:24:56 +02:00
Mark Olesen
3e43edf056 ENH: unify use of dictionary method names
- previously introduced `getOrDefault` as a dictionary _get_ method,
  now complete the transition and use it everywhere instead of
  `lookupOrDefault`. This avoids mixed usage of the two methods that
  are identical in behaviour, makes for shorter names, and promotes
  the distinction between "lookup" access (ie, return a token stream,
  locate and return an entry) and "get" access (ie, the above with
  conversion to concrete types such as scalar, label etc).
2020-06-02 17:26:03 +02:00
OpenFOAM bot
e9219558d7 GIT: Header file updates 2019-10-31 14:48:44 +00:00
Mark Olesen
beefee48d4 COMP: adjust compilation order with updated interdependencies
- Eg, with surface writers now in surfMesh, there are fewer libraries
  depending on conversion and sampling.

COMP: regularize linkage ordering and avoid some implicit linkage (#1238)
2019-04-28 14:44:33 +02:00
OpenFOAM bot
154029ddd0 BOT: Cleaned up header files 2019-02-06 12:28:23 +00:00
Mark Olesen
5d9e278e92 ENH: consolidate handling of mandatory/optional command arguments
- for some special cases we wish to mark command-line arguments as
  being optional, in order to do our own treatment. For example,
  when an arbitrary number of arguments should be allowed.

  Now tag this situation with argList::noMandatoryArgs().
  The argList::argsMandatory() query can then be used in any further
  logic, including the standard default argument checking.

- with the new default check, can consolidate the special-purpose

      "setRootCaseNonMandatoryArgs.H"

  into the regular

      "setRootCase.H"

- revert to a simple "setRootCase.H" and move all the listing related
  bits to a "setRootCaseLists.H" file. This leaves the information
  available for solvers, or whoever else wishes, without being
  introduced everywhere.

- add include guards and scoping to the listing files and rename to
  something less generic.

     listOptions.H -> setRootCaseListOptions.H
     listOutput.H  -> setRootCaseListOutput.H
2018-12-13 01:45:09 +01:00
Mark Olesen
68ec561df8 STYLE: add usage notes to more utilities and solvers 2018-12-11 15:25:27 +01:00
Mark Olesen
4e04c1966f ENH: use dictionary::get<word>() instead of lookup() in a few places 2018-10-19 09:11:31 +02:00
Mark Olesen
2662042d49 ENH: improve controls for Time (issue #910)
- relocate some standard functionality to TimePaths to allow a lighter
  means of managing time directories without using the entire Time
  mechanism.

- optional enableLibs for Time construction (default is on)
  and a corresponding argList::noLibs() and "-no-libs" option

STYLE:

- mark Time::outputTime() as deprecated MAY-2016

- use pre-increment for runTime, although there is no difference in
  behaviour or performance.
2018-07-02 10:20:01 +02:00
Andrew Heather
12e2142db8 COMP: refactoring to resolve compiler warnings - see #886 2018-06-20 10:56:04 +01:00
Andrew Heather
b50bbc7ef2 ENH: Added new dry-run options to solvers 2018-01-11 14:23:17 +00:00
Henry Weller
05f5a293bc ENH: MRF: Remove ddtCorr from MRF regions
MRFZone: Filter-out excluded patches from ddtCorr
2018-02-10 22:46:17 +00:00
Will Bainbridge
2193c8e31a ENH: basicSpecieThermo: Updated solver references to mixture class 2017-12-01 11:05:28 +00:00
Will Bainbridge
22aae2816d ENH: combustionModels: Changed the construction order
The combustion and chemistry models no longer select and own the
thermodynamic model; they hold a reference instead. The construction of
the combustion and chemistry models has been changed to require a
reference to the thermodyanmics, rather than the mesh and a phase name.

At the solver-level the thermo, turbulence and combustion models are now
selected in sequence. The cyclic dependency between the three models has
been resolved, and the raw-pointer based post-construction step for the
combustion model has been removed.

The old solver-level construction sequence (typically in createFields.H)
was as follows:

    autoPtr<combustionModels::psiCombustionModel> combustion
    (
        combustionModels::psiCombustionModel::New(mesh)
    );

    psiReactionThermo& thermo = combustion->thermo();

    // Create rho, U, phi, etc...

    autoPtr<compressible::turbulenceModel> turbulence
    (
        compressible::turbulenceModel::New(rho, U, phi, thermo)
    );

    combustion->setTurbulence(*turbulence);

The new sequence is:

    autoPtr<psiReactionThermo> thermo(psiReactionThermo::New(mesh));

    // Create rho, U, phi, etc...

    autoPtr<compressible::turbulenceModel> turbulence
    (
        compressible::turbulenceModel::New(rho, U, phi, *thermo)
    );

    autoPtr<combustionModels::psiCombustionModel> combustion
    (
        combustionModels::psiCombustionModel::New(*thermo, *turbulence)
    );

ENH: combustionModel, chemistryModel: Simplified model selection

The combustion and chemistry model selection has been simplified so
that the user does not have to specify the form of the thermodynamics.

Examples of new combustion and chemistry entries are as follows:

    In constant/combustionProperties:

        combustionModel PaSR;

        combustionModel FSD;

    In constant/chemistryProperties:

        chemistryType
        {
            solver          ode;
            method          TDAC;
        }

All the angle bracket parts of the model names (e.g.,
<psiThermoCombustion,gasHThermoPhysics>) have been removed as well as
the chemistryThermo entry.

The changes are mostly backward compatible. Only support for the
angle bracket form of chemistry solver names has been removed. Warnings
will print if some of the old entries are used, as the parts relating to
thermodynamics are now ignored.

ENH: combustionModel, chemistryModel: Simplified model selection

Updated all tutorials to the new format

STYLE: combustionModel: Namespace changes

Wrapped combustion model make macros in the Foam namespace and removed
combustion model namespace from the base classes. This fixes a namespace
specialisation bug in gcc 4.8. It is also somewhat less verbose in the
solvers.

This resolves bug report https://bugs.openfoam.org/view.php?id=2787

ENH: combustionModels: Default to the "none" model

When the constant/combustionProperties dictionary is missing, the solver
will now default to the "none" model. This is consistent with how
radiation models are selected.
2017-11-23 16:57:12 +00:00
Henry Weller
798ac98aef BUG: simpleFoam: moved createFvOptions.H into createFields.H for -postProcess option
To unsure fvOptions are instantiated for post-processing createFvOptions.H must
be included in createFields.H rather than in the solver directly.

Resolves bug-report https://bugs.openfoam.org/view.php?id=2733

BUG: porousSimpleFoam: moved createFvOptions.H into createFields.H for -postProcess option

Resolves bug-report https://bugs.openfoam.org/view.php?id=2733

BUG: solvers: Moved fvOption construction into createFields.H for post-processing

This ensures that the fvOptions are constructed for the -postProcessing option
so that functionObjects which process fvOption data operate correctly in this
mode.
2017-10-23 22:20:52 +01:00
Mark Olesen
dd8341f659 ENH: make format of ExecutionTime = ... output configurable (issue #788)
- controlled by the the 'printExecutionFormat' InfoSwitch in
  etc/controlDict

      // Style for "ExecutionTime = " output
      // - 0 = seconds (with trailing 's')
      // - 1 = day-hh:mm:ss

   ExecutionTime = 112135.2 s  ClockTime = 113017 s

   ExecutionTime = 1-07:08:55.20  ClockTime = 1-07:23:37

- Callable via the new Time::printExecutionTime() method,
  which also helps to reduce clutter in the applications.
  Eg,

     runTime.printExecutionTime(Info);

  vs

     Info<< "ExecutionTime = " << runTime.elapsedCpuTime() << " s"
         << "  ClockTime = " << runTime.elapsedClockTime() << " s"
         << nl << endl;

--

ENH: return elapsedClockTime() and clockTimeIncrement as double

- previously returned as time_t, which is less portable.
2018-04-27 15:00:34 +02:00
Mark Olesen
2f86cdc712 STYLE: more consistent use of dimensioned Zero
- when constructing dimensioned fields that are to be zero-initialized,
  it is preferrable to use a form such as

      dimensionedScalar(dims, Zero)
      dimensionedVector(dims, Zero)

  rather than

      dimensionedScalar("0", dims, 0)
      dimensionedVector("zero", dims, vector::zero)

  This reduces clutter and also avoids any suggestion that the name of
  the dimensioned quantity has any influence on the field's name.

  An even shorter version is possible. Eg,

      dimensionedScalar(dims)

  but reduces the clarity of meaning.

- NB: UniformDimensionedField is an exception to these style changes
  since it does use the name of the dimensioned type (instead of the
  regIOobject).
2018-03-16 10:24:03 +01:00
Mark Olesen
36719bf55b STYLE: consistent lookupOrDefault template parameters
- in many cases can just use lookupOrDefault("key", bool) instead of
  lookupOrDefault<bool> or lookupOrDefault<Switch> since reading a
  bool from an Istream uses the Switch(Istream&) anyhow

STYLE: relocated Switch string names into file-local scope
2018-03-26 09:09:09 +02:00
Henry Weller
791e1ca2d2 Merged reactingParcelFilmFoam into reactingParcelFoam
The combined solver includes the most advanced and general functionality from
each solver including:

    Continuous phase
    Lagrangian multiphase parcels
    Optional film
    Continuous and Lagrangian phase reactions
    Radiation
    Strong buoyancy force support by solving for p_rgh

The reactingParcelFoam and reactingParcelFilmFoam tutorials have been combined
and updated.
2017-08-29 09:33:45 +01:00
Andrew Heather
65071b9598 ENH: Updated dpdt and K field construction 2017-06-21 12:20:58 +01:00
Andrew Heather
91b90da4f3 Integrated Foundation code to commit 104aac5 2017-05-17 16:35:18 +01:00
Henry Weller
1805b3c98f radiationModel: Added "he" argument to the "Sh" function
for consistency with the other energy sources.
2017-04-13 13:57:33 +01:00
Andrew Heather
dcb1a95e35 MRG: Integrated Foundation code to commit 7d6845d 2017-03-23 14:33:33 +00:00
Andrew Heather
04c3d535b0 MRG: Integrated Foundation code to commit 47bd8e1 2017-03-23 10:12:38 +00:00
Henry Weller
d2be645483 thermophysicalProperties: New base-class for liquidProperties and in the future gasProperties
Description
    Base-class for thermophysical properties of solids, liquids and gases
    providing an interface compatible with the templated thermodynamics
    packages.

liquidProperties, solidProperties and thermophysicalFunction libraries have been
combined with the new thermophysicalProperties class into a single
thermophysicalProperties library to simplify compilation and linkage of models,
libraries and applications dependent on these classes.
2017-02-18 21:53:20 +00:00
Henry Weller
c52e4b58a1 thermophysicalModels: Changed specie thermodynamics from mole to mass basis
The fundamental properties provided by the specie class hierarchy were
mole-based, i.e. provide the properties per mole whereas the fundamental
properties provided by the liquidProperties and solidProperties classes are
mass-based, i.e. per unit mass.  This inconsistency made it impossible to
instantiate the thermodynamics packages (rhoThermo, psiThermo) used by the FV
transport solvers on liquidProperties.  In order to combine VoF with film and/or
Lagrangian models it is essential that the physical propertied of the three
representations of the liquid are consistent which means that it is necessary to
instantiate the thermodynamics packages on liquidProperties.  This requires
either liquidProperties to be rewritten mole-based or the specie classes to be
rewritten mass-based.  Given that most of OpenFOAM solvers operate
mass-based (solve for mass-fractions and provide mass-fractions to sub-models it
is more consistent and efficient if the low-level thermodynamics is also
mass-based.

This commit includes all of the changes necessary for all of the thermodynamics
in OpenFOAM to operate mass-based and supports the instantiation of
thermodynamics packages on liquidProperties.

Note that most users, developers and contributors to OpenFOAM will not notice
any difference in the operation of the code except that the confusing

    nMoles     1;

entries in the thermophysicalProperties files are no longer needed or used and
have been removed in this commet.  The only substantial change to the internals
is that species thermodynamics are now "mixed" with mass rather than mole
fractions.  This is more convenient except for defining reaction equilibrium
thermodynamics for which the molar rather than mass composition is usually know.
The consequence of this can be seen in the adiabaticFlameT, equilibriumCO and
equilibriumFlameT utilities in which the species thermodynamics are
pre-multiplied by their molecular mass to effectively convert them to mole-basis
to simplify the definition of the reaction equilibrium thermodynamics, e.g. in
equilibriumCO

    // Reactants (mole-based)
    thermo FUEL(thermoData.subDict(fuelName)); FUEL *= FUEL.W();

    // Oxidant (mole-based)
    thermo O2(thermoData.subDict("O2")); O2 *= O2.W();
    thermo N2(thermoData.subDict("N2")); N2 *= N2.W();

    // Intermediates (mole-based)
    thermo H2(thermoData.subDict("H2")); H2 *= H2.W();

    // Products (mole-based)
    thermo CO2(thermoData.subDict("CO2")); CO2 *= CO2.W();
    thermo H2O(thermoData.subDict("H2O")); H2O *= H2O.W();
    thermo CO(thermoData.subDict("CO")); CO *= CO.W();

    // Product dissociation reactions

    thermo CO2BreakUp
    (
        CO2 == CO + 0.5*O2
    );

    thermo H2OBreakUp
    (
        H2O == H2 + 0.5*O2
    );

Please report any problems with this substantial but necessary rewrite of the
thermodynamic at https://bugs.openfoam.org

Henry G. Weller
CFD Direct Ltd.
2017-02-17 11:22:14 +00:00
Henry Weller
b99817d924 Rationalized heat release rate functions
Combined 'dQ()' and 'Sh()' into 'Qdot()' which returns the heat-release rate in
the normal units [kg/m/s3] and used as the heat release rate source term in
the energy equations, to set the field 'Qdot' in several combustion solvers
and for the evaluation of the local time-step when running LTS.
2016-12-15 17:10:21 +00:00
sergio
ccf3b9db13 BUG: Changing init for thermocouple FO. Changing radiation.correct in fireFoam to allow
correct case re-start
2016-10-27 08:49:47 -07:00
Andrew Heather
9fbd612672 GIT: Initial state after latest Foundation merge 2016-09-20 14:49:08 +01:00
Henry Weller
b8614eca07 Make/options: Removed duplicate entries
Thanks to Bruno Santos for providing the script to check the files
Resolves bug-report http://bugs.openfoam.org/view.php?id=2169
2016-08-01 20:55:16 +01:00
Henry Weller
1d57269680 TDACChemistryModel: New chemistry model providing Tabulation of Dynamic Adaptive Chemistry
Provides efficient integration of complex laminar reaction chemistry,
combining the advantages of automatic dynamic specie and reaction
reduction with ISAT (in situ adaptive tabulation).  The advantages grow
as the complexity of the chemistry increases.

References:
    Contino, F., Jeanmart, H., Lucchini, T., & D’Errico, G. (2011).
    Coupling of in situ adaptive tabulation and dynamic adaptive chemistry:
    An effective method for solving combustion in engine simulations.
    Proceedings of the Combustion Institute, 33(2), 3057-3064.

    Contino, F., Lucchini, T., D'Errico, G., Duynslaegher, C.,
    Dias, V., & Jeanmart, H. (2012).
    Simulations of advanced combustion modes using detailed chemistry
    combined with tabulation and mechanism reduction techniques.
    SAE International Journal of Engines,
    5(2012-01-0145), 185-196.

    Contino, F., Foucher, F., Dagaut, P., Lucchini, T., D’Errico, G., &
    Mounaïm-Rousselle, C. (2013).
    Experimental and numerical analysis of nitric oxide effect on the
    ignition of iso-octane in a single cylinder HCCI engine.
    Combustion and Flame, 160(8), 1476-1483.

    Contino, F., Masurier, J. B., Foucher, F., Lucchini, T., D’Errico, G., &
    Dagaut, P. (2014).
    CFD simulations using the TDAC method to model iso-octane combustion
    for a large range of ozone seeding and temperature conditions
    in a single cylinder HCCI engine.
    Fuel, 137, 179-184.

Two tutorial cases are currently provided:
    + tutorials/combustion/chemFoam/ic8h18_TDAC
    + tutorials/combustion/reactingFoam/laminar/counterFlowFlame2D_GRI_TDAC

the first of which clearly demonstrates the advantage of dynamic
adaptive chemistry providing ~10x speedup,

the second demonstrates ISAT on the modest complex GRI mechanisms for
methane combustion, providing a speedup of ~4x.

More tutorials demonstrating TDAC on more complex mechanisms and cases
will be provided soon in addition to documentation for the operation and
settings of TDAC.  Also further updates to the TDAC code to improve
consistency and integration with the rest of OpenFOAM and further
optimize operation can be expected.

Original code providing all algorithms for chemistry reduction and
tabulation contributed by Francesco Contino, Tommaso Lucchini, Gianluca
D’Errico, Hervé Jeanmart, Nicolas Bourgeois and Stéphane Backaert.

Implementation updated, optimized and integrated into OpenFOAM-dev by
Henry G. Weller, CFD Direct Ltd with the help of Francesco Contino.
2016-07-17 15:13:54 +01:00
Henry Weller
7e53be1560 Reacting solvers: Added check for the existence of the inert specie 2016-07-06 17:45:34 +01:00
Chris Greenshields
288ead131d Descriptions of solvers corrected and made more consistent and more user-friendly 2016-06-09 18:59:40 +01:00
Henry Weller
364044243a applications/solvers/combustion: Added -postProcess option
See also commit cc455173ff
2016-05-09 14:51:21 +01:00
Henry Weller
4c5052a3a1 applications/solvers: include readTimeControls.H in the time-loop rather than createTimeControls.H
Patch contributed by Bruno Santos
Resolved bug-report http://www.openfoam.org/mantisbt/view.php?id=2079
2016-05-01 11:06:21 +01:00
Henry Weller
62c62abda8 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
andy
fd9d801e2d GIT: Initial commit after latest foundation merge 2016-04-25 11:40:48 +01:00
Henry Weller
673e0d1704 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
Henry Weller
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
Henry Weller
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
Henry Weller
56fa7c0906 Update code to use the simpler C++11 template syntax removing spaces between closing ">"s 2016-01-10 22:41:16 +00:00
Andrew Heather
8f1d043364 GIT: Resolved conflict 2015-12-09 09:32:38 +00:00
Andrew Heather
b594d73c65 ENH: Solvers - updated group documentation 2015-12-03 22:05:55 +00:00
Henry Weller
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
Henry Weller
3dfe844d9a applications/solvers: Added call to validate the turbulence model after construction
See also commit 52d83407f3
2015-12-01 10:25:38 +00:00
Henry Weller
91e04d69c1 Resolve various unimportant warning messages from Gcc, Clang and Icpc 2015-07-19 11:31:49 +01:00
Henry Weller
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
Henry
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