Commit Graph

837 Commits

Author SHA1 Message Date
cbf793fca2 ENH: Updated header file documentation 2017-03-21 09:40:35 +00:00
c1ca2f4a38 BUG: missing chdir in Allwclean for wallFunctionTable
STYLE: improve consistency in Allwclean scripts
2017-02-23 01:07:10 +01:00
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
267903077b ENH: interCondensingEvaporatingFoam - updated for postProcess utility; tidying 2016-12-16 13:33:19 +00:00
d5301772f7 Update of interCondensingEvaporatingFoam and its tutorial 2016-12-15 12:36:48 -08:00
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
36f8895e78 Merge branch 'develop' of develop.openfoam.com:Development/OpenFOAM-plus into develop 2016-12-13 07:20:39 -08:00
c0a2c16f6c Merge branch 'develop' of develop.openfoam.com:Development/OpenFOAM-plus into develop 2016-12-12 10:36:33 -08:00
88128e0392 ENH: compressibleInterDyMFoam enhancements for mesh motion and sphere drop test case tutorial 2016-12-12 10:34:49 -08:00
c0f44ac4f3 MRG: Integrated foundation code 2016-12-12 12:10:29 +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
5c7b3c7886 reactingTwoPhaseEulerFoam: Corrected LTS support
Resolves bug-report http://bugs.openfoam.org/view.php?id=2374
2016-12-06 09:30:50 +00:00
a95b7aa6b7 alphatWallBoilingWallFunctionFvPatchScalarField.H: corrected mode 2016-12-05 20:08:24 +00:00
304af9fc5f reactingTwoPhaseEulerFoam: Added LTS support to the face-momentum algorithm 2016-12-04 10:14:43 +00:00
144e08e213 reactingEulerFoam: Updated to support zoneCombustion models 2016-12-01 15:16:19 +00:00
6f2b2aff40 STYLE: reduce script verbosity 2016-12-13 08:15:00 +01:00
1f826361c6 STYLE: Consistency updates to change input of <var>Name to <var>. Fixes #306 2016-11-22 14:50:33 +00:00
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
80db302666 Allwmake: Remove 'set -x' which generates a lot of noise
'set -x' should be used for debugging.

Added command printing into wmake and Allwmake as a replacement for
'set -x' to log current target.
2016-11-13 18:08:22 +00:00
ad476af9b3 reactingEulerFoam, twoPhaseEulerFoam: Reinstated interfacial pressure-work
Added the interfacial pressure-work terms according to:

Ishii, M., Hibiki, T.,
Thermo-fluid dynamics of two-phase flow,
ISBN-10: 0-387-28321-8, 2006

While this is the most common approach to handling the interfacial
pressure-work it introduces numerical stability issues in regions of low
phase-fraction and rapid flow deformation.  To alleviate this problem an
optional limiter may be applied to the pressure-work term in either of
the energy forms.  This may specified in the
"thermophysicalProperties.<phase>" file, e.g.

pressureWorkAlphaLimit 1e-3;

which sets the pressure work term to 0 for phase-fractions below 1e-3.

For particularly unstable cases a limit of 1e-2 may be necessary.
2016-11-09 11:14:26 +00:00
b06c4280c7 Revert "twoPhaseEulerFoam::EEqns: Updated pressure-work"
This reverts commit f7996e45a0.
2016-11-09 08:44:36 +00:00
f7996e45a0 twoPhaseEulerFoam::EEqns: Updated pressure-work
See commit b5206472b5
2016-11-07 23:14:13 +00:00
0ed96603d4 driftFluxFoam: Corrected Udm BCs
Added 'READ_IF_PRESENT' option to support overriding of the default BCs
for complex problems requiring special treatment of Udm at boundaries.

Resolves bug-report http://bugs.openfoam.org/view.php?id=2317
2016-11-05 18:17:24 +00:00
b5206472b5 reactingEulerFoam: Corrected and rationalized pressure-work
In many publications and Euler-Euler codes the pressure-work term in the
total enthalpy is stated and implemented as -alpha*dp/dt rather than the
conservative form derived from the total internal energy equation
-d(alpha*p)/dt.  In order for the enthalpy and internal energy equations
to be consistent this error/simplification propagates to the total
internal energy equation as a spurious additional term p*d(alpha)/dt
which is included in the OpenFOAM Euler-Euler solvers and causes
stability and conservation issues.

I have now re-derived the energy equations for multiphase flow from
first-principles and implemented in the reactingEulerFoam solvers the
correct conservative form of pressure-work in both the internal energy
and enthalpy equations.

Additionally an optional limiter may be applied to the pressure-work
term in either of the energy forms to avoid spurious fluctuations in the
phase temperature in regions where the phase-fraction -> 0.  This may
specified in the "thermophysicalProperties.<phase>" file, e.g.

pressureWorkAlphaLimit 1e-3;

which sets the pressure work term to 0 for phase-fractions below 1e-3.
2016-11-04 12:07:09 +00:00
a6918385b7 reactingEulerFoam: Correct continuity error at the end of the energy correction loop
to handle the change in density generated by the temperature correction.
2016-10-31 08:23:51 +00:00
f2ce1fa9ac twoPhaseEulerFoam::twoPhaseSystem: Ensure inlet flow of BOTH phases matches the BCs
Previously the inlet flow of phase 1 (the phase solved for) is corrected
to match the inlet specification for that phase.  However, if the second
phase is also constrained at inlets the inlet flux must also be
corrected to match the inlet specification.
2016-10-28 10:50:10 +01:00
af81184ecf MRG: Resolve conflict with latest foundation merge 2016-10-26 15:37:15 +01:00
7edc2495e0 twoPhaseEulerFoam, reactingTwoPhaseEulerFoam: Corrected support for implicitPhasePressure with nAlphaCorr > 1
Resolves bug-report http://bugs.openfoam.org/view.php?id=2290
2016-10-12 18:43:18 +01:00
8ff2e8f14d BUG: Corrected assignment to reference object 2016-10-07 12:26:09 +01:00
b92754311a reactingTwoPhaseEulerFoam::IATE: Added phaseChange source
to handle the effect of condensation and evaporation on bubble size
2016-10-07 09:34:35 +01:00
d6b404dba2 reactingTwoPhaseEulerFoam::IATE: Added wallBoiling sub-model
to handle the size of bubbles created by boiling.  To be used in
conjunction with the alphatWallBoilingWallFunction boundary condition.

The IATE variant of the wallBoiling tutorial case is provided to
demonstrate the functionality:

tutorials/multiphase/reactingTwoPhaseEulerFoam/RAS/wallBoilingIATE
2016-10-06 12:40:58 +01:00
0d66ffcce8 twoPhaseEulerFoam: Corrected kineticTheory frictional stress at walls
Patch contributed by Juho Peltola, VTT

The new JohnsonJacksonSchaefferFrictionalStress model is included.

Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=2058
2016-10-05 09:27:28 +01:00
daf57eddf6 alphatWallBoilingWallFunctionFvPatchScalarField: Evaluate alphatConv_ outside loop to improve speed
Patch contributed by Juho Peltola
2016-10-04 16:37:32 +01:00
8016af3704 reactingTwoPhaseEulerFoam: Enhanced support for wall boiling
Contributed by Juho Peltola, VTT

Notable changes:

    1. The same wall function is now used for both phases, but user must
       specify phaseType ‘liquid’ or ‘vapor’

    2. Runtime selectable submodels for:
       - wall heat flux partitioning between the phases
       - nucleation site density
       - bubble departure frequency
       - bubble departure diameter

    3. An additional iteration loop for the wall boiling model in case
       the initial guess for the wall temperature proves to be poor.

The wallBoiling tutorial has been updated to demonstrate this new functionality.
2016-10-04 09:53:09 +01:00
839f14afcd ENH: Code clean-up 2016-09-30 12:30:02 +01:00
bd0e982d99 MRG: Initial commit after latest Foundation merge 2016-09-30 11:16:28 +01:00
1fbcb686ff STYLE: Consistency updates 2016-09-23 16:52:46 +01:00
b9940cbbb1 COMP: Multiple changes - first clean build after latest merge - UNTESTED 2016-09-23 15:36:53 +01:00
6b42dbae41 TurbulenceModels: Created a general base-class and selection mechanism for laminar stress models
Renamed the original 'laminar' model to 'Stokes' to indicate it is a
linear stress model supporting both Newtonian and non-Newtonian
viscosity.

This general framework will support linear, non-linear, visco-elastic
etc. laminar transport models.

For backward compatibility the 'Stokes' laminar stress model can be
selected either the original 'laminar' 'simulationType'
specification in turbulenceProperties:

    simulationType laminar;

or using the new more general 'laminarModel' specification:

    simulationType laminar;

    laminar
    {
        laminarModel        Stokes;
    }

which allows other laminar stress models to be selected.
2016-09-20 15:05:43 +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
34928b7c82 reactingEulerFoam/interfacialModels/dragModels: Corrected file permissions 2016-09-09 21:48:29 +01:00
58f905ff70 C++11: Replaced the C NULL with the safer C++11 nullptr
Requires gcc version 4.7 or higher
2016-08-05 17:19:38 +01:00
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
46ba7267de TurbulenceModels: Reorganized support macros to simplify the creation of additional turbulence model libraries 2016-07-29 15:59:09 +01:00
b8bb388ffd reactingEulerFoam, twoPhaseEulerFoam: Added fvOption sources to the face-based momentum equations 2016-07-19 16:33:07 +01:00
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
04afdaffc7 reactingTwoPhaseEulerFoam/pUf/UEqns: Changed naming convention for the dmdt's
for consistency with HeatAndMassTransferPhaseSystem.C
Resolves bug-report http://bugs.openfoam.org/view.php?id=2141
2016-07-07 14:36:10 +01:00