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  • /*---------------------------------------------------------------------------*\
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       \\    /   O peration     |
    
        \\  /    A nd           | Copyright (C) 2011-2016 OpenFOAM Foundation
    
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    -------------------------------------------------------------------------------
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        along with OpenFOAM.  If not, see <http://www.gnu.org/licenses/>.
    
        Foam::functionObjects::fieldValues::surfaceRegion
    
    Group
        grpFieldFunctionObjects
    
    
        This function object provides a 'face regionType' variant of the fieldValues
    
        function object.  Given a list of user-specified fields and a selection
        of mesh (or general surface) faces, a number of operations can be
        performed, such as sums, averages and integrations.
    
        \linebreak
        For example, to calculate the volumetric or mass flux across a patch,
        apply the 'sum' operator to the flux field (typically \c phi)
    
        Example of function object specification:
    
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        \verbatim
    
            libs ("libfieldFunctionObjects.so");
    
            ...
            log             yes;
    
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            surfaceFormat   none;
    
            operation       sum;
    
            weightField     alpha1;
    
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        \endverbatim
    
        \heading Function object usage
        \table
            Property     | Description             | Required    | Default value
    
            type         | type name: surfaceRegion   | yes         |
    
            log          | write data to standard output | no    | no
    
            writeFields  | write the output values | yes         |
    
            writeArea    | Write the area of the surfaceRegion | no |
    
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            surfaceFormat | output value format    | no          |
    
            regionType   | face regionType: see below  | yes         |
            name         | name of face regionType if required  | no |
    
            operation    | operation to perform    | yes         |
            weightField  | name of field to apply weighting | no |
    
            orientedWeightField  | name of oriented field to apply weighting | no |
    
            scaleFactor  | scale factor            | no          | 1
    
            fields       | list of fields to operate on | yes    |
    
            orientedFields | list of oriented fields to operate on | no |
    
        \endtable
    
        \linebreak
    
        \plaintable
    
            faceZone     | requires a 'name' entry to specify the faceZone
            patch        | requires a 'name' entry to specify the patch
    
            sampledSurface | requires a 'sampledSurfaceDict' sub-dictionary
        \endplaintable
    
        \linebreak
        The \c operation is one of:
        \plaintable
           none          | no operation
           sum           | sum
    
           sumMag        | sum of component magnitudes
    
           sumDirection  | sum values which are positive in given direction
    
           sumDirectionBalance | sum of balance of values in given direction
    
           average       | ensemble average
           weightedAverage | weighted average
           areaAverage   | area weighted average
    
           weightedAreaAverage | weighted area average
    
           areaIntegrate | area integral
           min           | minimum
           max           | maximum
           CoV           | coefficient of variation: standard deviation/mean
           areaNormalAverage| area weighted average in face normal direction
           areaNormalIntegrate | area weighted integral in face normal directon
        \endplaintable
    
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        - The values reported by the areaNormalAverage and areaNormalIntegrate
          operations are written as the first component of a field with the same
          rank as the input field.
    
        - faces on empty patches get ignored
    
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        - if the field is a volField the \c faceZone can only consist of boundary
          faces
    
        - the `oriented' entries relate to mesh-oriented fields, such as the
          flux, phi.  These fields will be oriented according to the face normals.
    
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        - using \c sampledSurfaces:
    
            - not available for surface fields
    
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            - if interpolate=true they use \c interpolationCellPoint
              otherwise they use cell values
            - each triangle in \c sampledSurface is logically only in one cell
              so interpolation will be wrong when triangles are larger than
    
              cells.  This can only happen for sampling on a \c triSurfaceMesh
    
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            - take care when using isoSurfaces - these might have duplicate
    
              triangles and so integration might be wrong
    
    SeeAlso
        Foam::fieldValues
        Foam::functionObject
    
    
    \*---------------------------------------------------------------------------*/
    
    
    #ifndef functionObjects_surfaceRegion_H
    #define functionObjects_surfaceRegion_H
    
    
    #include "fieldValue.H"
    
    
    // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
    
    namespace Foam
    {
    
    namespace fieldValues
    {
    
    /*---------------------------------------------------------------------------*\
    
    \*---------------------------------------------------------------------------*/
    
    
    :
        public fieldValue
    {
    
    public:
    
        // Public data types
    
    
            //- region type enumeration
            enum regionTypes
    
            //- region type names
            static const NamedEnum<regionTypes, 3> regionTypeNames_;
    
    
    
            //- Operation type enumeration
            enum operationType
            {
                opNone,
                opSum,
    
                opSumDirectionBalance,
    
                opWeightedAverage,
    
                opWeightedAreaAverage,
    
                opAreaIntegrate,
    
                opMin,
    
                opCoV,
                opAreaNormalAverage,
                opAreaNormalIntegrate
    
            };
    
            //- Operation type names
    
            static const NamedEnum<operationType, 15> operationTypeNames_;
    
    
            //- Set faces to evaluate based on a face zone
            void setFaceZoneFaces();
    
            //- Set faces to evaluate based on a patch
            void setPatchFaces();
    
    
            //- Set faces according to sampledSurface
            void sampledSurfaceFaces(const dictionary&);
    
    
            //- Combine mesh faces and points from multiple processors
    
            void combineMeshGeometry
            (
                faceList& faces,
                pointField& points
            ) const;
    
    
            //- Combine surface faces and points from multiple processors
    
            void combineSurfaceGeometry
            (
                faceList& faces,
                pointField& points
            ) const;
    
    
            //- Calculate and return total area of the surfaceRegion: sum(magSf)
    
            //- Surface writer
            autoPtr<surfaceWriter> surfaceWriterPtr_;
    
    
    
            //- Operation to apply to values
            operationType operation_;
    
    
            //- Weight field name - optional
    
            //- Flag to indicate if flipMap should be applied to the weight field
            bool orientWeightField_;
    
            //- Start index of fields that require application of flipMap
            label orientedFieldsStart_;
    
    
            //- Scale factor - optional
            scalar scaleFactor_;
    
    
            //- Optionally write the area of the surfaceRegion
    
            //- Global number of faces
            label nFaces_;
    
    
            // If operating on mesh faces (faceZone, patch)
    
                //- Local list of face IDs
                labelList faceId_;
    
                //- Local list of patch ID per face
                labelList facePatchId_;
    
                //- List of +1/-1 representing face flip map
                //  (1 use as is, -1 negate)
                labelList faceSign_;
    
    
                //- Underlying sampledSurface
    
                autoPtr<sampledSurface> surfacePtr_;
    
    
            //- Initialise, e.g. face addressing
    
            void initialise(const dictionary& dict);
    
            //- Return true if the field name is valid
    
            template<class Type>
    
            bool validField(const word& fieldName) const;
    
            //- Return field values by looking up field name
            template<class Type>
    
                const bool mustGet = false,
                const bool applyOrientation = false
    
            //- Apply the 'operation' to the values. Operation has to
            //  preserve Type.
            template<class Type>
            Type processSameTypeValues
            (
                const Field<Type>& values,
                const vectorField& Sf,
                const scalarField& weightField
            ) const;
    
            //- Apply the 'operation' to the values. Wrapper around
            //  processSameTypeValues. See also template specialisation below.
    
            template<class Type>
    
            Type processValues
            (
                const Field<Type>& values,
    
                const vectorField& Sf,
    
                const scalarField& weightField
    
    
            //- Output file header information
    
            virtual void writeFileHeader(const label i);
    
    
    
    public:
    
        //- Run-time type information
    
            //- Construct from name, Time and dictionary
    
            (
                const word& name,
                const Time& runTime,
                const dictionary& dict
            );
    
            //- Construct from name, objectRegistry and dictionary
    
            //- Return the region type
            inline const regionTypes& regionType() const;
    
            //- Return the local list of face IDs
            inline const labelList& faceId() const;
    
            //- Return the local list of patch ID per face
            inline const labelList& facePatch() const;
    
            //- Return the list of +1/-1 representing face flip map
            inline const labelList& faceSign() const;
    
            //- Templated helper function to output field values
            template<class Type>
            bool writeValues
            (
                const word& fieldName,
                const scalarField& weightField,
                const bool orient
            );
    
            //- Filter a surface field according to faceIds
            template<class Type>
            tmp<Field<Type>> filterField
            (
                const GeometricField<Type, fvsPatchField, surfaceMesh>& field,
                const bool applyOrientation
            ) const;
    
            //- Filter a volume field according to faceIds
            template<class Type>
            tmp<Field<Type>> filterField
            (
                const GeometricField<Type, fvPatchField, volMesh>& field,
                const bool applyOrientation
            ) const;
    
            //- Read from dictionary
            virtual bool read(const dictionary&);
    
    (
        const Field<scalar>& values,
        const vectorField& Sf,
        const scalarField& weightField
    ) const;
    
    
    
    (
        const Field<vector>& values,
        const vectorField& Sf,
        const scalarField& weightField
    ) const;
    
    
    
    // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
    
    } // End namespace fieldValues
    
    } // End namespace Foam
    
    // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
    
    
    
    // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
    
    #ifdef NoRepository
    
    #endif
    
    // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
    
    #endif
    
    // ************************************************************************* //