- Jun 14, 2017
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sergio authored
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- Jun 13, 2017
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sergio authored
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sergio authored
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Mark OLESEN authored
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Mark OLESEN authored
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Mark OLESEN authored
- Use on/off vs longer compressed/uncompressed. For consistency, replaced yes/no with on/off. - Avoid the combination of binary/compressed, which is disallowed and provokes a warning anyhow
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- Jun 12, 2017
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sergio authored
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sergio authored
fanPressureFvPatchScalarField.H: Correcting header documentation RAS/TJunctionFan/0.orig: Creating tutorial for fanPressure Adding pRef and pValue for tutorial createZeroDirectory/snappyMultiRegionHeater
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sergio authored
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sergio authored
Adding intertial term switch to solarLoad chtMultiRegionFoam case
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Mark OLESEN authored
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Mark OLESEN authored
- By definition, binary STL uses float (not double) when reading. The ascii STL should be the same. This reduces memory overhead when loading files. The older triSurface reader had float, the surfMesh reader had double, but now has float. - Inconsistency in the STL merge-tolerances between triSurface reader, surfMesh reader and WM_SP vs WM_DP. Now use consistent tolerances conrresponding to 10,100 * doubleSMALL. - Similar float/double code adjustments for TRI format since this is very similar to the STL reader and had a similar inconsistency between the triSurface and surfMesh version. The AC3D reader still uses double when reading, but this can be revisited in the future (and can then remove the stichTriangles method too).
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Mark OLESEN authored
- only treat text as an option if it is preceded by 0-4 spaces. This prevents the description of an option from being accidentally detected as an option.
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Mark OLESEN authored
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Mark OLESEN authored
- can avoid the intermediate point distance field in exchange for calculating a point subtraction twice.
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Mark OLESEN authored
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- May 09, 2017
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Henry Weller authored
Based on development contributed by Paul Edwards, Intel. Conflicts: applications/utilities/parallelProcessing/reconstructParMesh/reconstructParMesh.C
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- Jun 12, 2017
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Andrew Heather authored
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- Jun 09, 2017
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Andrew Heather authored
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Andrew Heather authored
Evolves an electrical potential equation \f[ \grad \left( \sigma \grad V \right) \f] where \f$ V \f$ is electrical potential and \f$\sigma\f$ is the electrical current To provide a Joule heating contribution according to: Differential form of Joule heating - power per unit volume: \f[ \frac{d(P)}{d(V)} = J \cdot E \f] where \f$ J \f$ is the current density and \f$ E \f$ the electric field. If no magnetic field is present: \f[ J = \sigma E \f] The electric field given by \f[ E = \grad V \f] Therefore: \f[ \frac{d(P)}{d(V)} = J \cdot E = (sigma E) \cdot E = (sigma \grad V) \cdot \grad V \f] Usage Isotropic (scalar) electrical conductivity \verbatim jouleHeatingSourceCoeffs { anisotropicElectricalConductivity no; // Optionally specify the conductivity as a function of // temperature // Note: if not supplied, this will be read from the time // directory sigma table ( (273 1e5) (1000 1e5) ); } \endverbatim Anisotropic (vectorial) electrical conductivity jouleHeatingSourceCoeffs { anisotropicElectricalConductivity yes; coordinateSystem { type cartesian; origin (0 0 0); coordinateRotation { type axesRotation; e1 (1 0 0); e3 (0 0 1); } } // Optionally specify sigma as a function of temperature //sigma (31900 63800 127600); // //sigma table //( // (0 (0 0 0)) // (1000 (127600 127600 127600)) //); } Where: \table Property | Description | Required | Default value T | Name of temperature field | no | T sigma | Electrical conductivity as a function of temperature |no| anisotropicElectricalConductivity | Anisotropic flag | yes | \endtable The electrical conductivity can be specified using either: - If the \c sigma entry is present the electrical conductivity is specified as a function of temperature using a Function1 type - If not present the sigma field will be read from file - If the anisotropicElectricalConductivity flag is set to 'true', sigma should be specified as a vector quantity
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- Jun 08, 2017
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Andrew Heather authored
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Andrew Heather authored
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Andrew Heather authored
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Andrew Heather authored
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Andrew Heather authored
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sergio authored
Updating fvSolution's for closed domains for chtMultiRegionFoam cases
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sergio authored
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sergio authored
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- Jun 07, 2017
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mattijs authored
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mattijs authored
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sergio authored
simpleRho or limiting p.
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mattijs authored
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Andrew Heather authored
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Andrew Heather authored
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sergio authored
Update pEq for close domains.
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- Jun 05, 2017
- Jun 02, 2017
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sergio authored
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sergio authored
2)Adapting divU in TEqn.H for compressibleInterDyMFoam and compressibleInterFoam 3)Re-instated sixDoFRigidBodyDisplacement as patch for pointFields. It allows to use a different fvDynamincMesh type independently of the BC's
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Mark OLESEN authored
- these are compile-time constants and can be marked as such in C++11.
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