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51 mixedFvPatchScalarField(
p, iF)
55 valueFraction() = 1.0;
68 mixedFvPatchScalarField(ptf,
p, iF, mapper)
80 mixedFvPatchScalarField(
p, iF)
82 if (
dict.found(
"refValue"))
96 valueFraction() = 1.0;
109 mixedFvPatchScalarField(ptf)
120 mixedFvPatchScalarField(ptf, iF)
146 dom.setRayIdLambdaId(internalField().
name(), rayId, lambdaId);
148 const label patchi =
patch().index();
150 if (dom.nLambda() == 0)
153 <<
" a non-grey boundary condition is used with a grey "
160 radiativeIntensityRay& ray =
161 const_cast<radiativeIntensityRay&
>(dom.IRay(rayId));
165 ray.qr().boundaryFieldRef()[patchi] += Iw*nAve;
169 dom.blackBody().bLambda(lambdaId).boundaryField()[patchi]
172 const boundaryRadiationProperties& boundaryRadiation =
176 const tmp<scalarField> temissivity
178 boundaryRadiation.emissivity(
patch().index(), lambdaId)
182 const tmp<scalarField> ttransmissivity
184 boundaryRadiation.transmissivity(
patch().index(), lambdaId)
186 const scalarField& transmissivity = ttransmissivity();
188 scalarField& qem = ray.qem().boundaryFieldRef()[patchi];
189 scalarField& qin = ray.qin().boundaryFieldRef()[patchi];
195 for (label rayi=0; rayi < dom.nRay(); rayi++)
197 const vector& d = dom.IRay(rayi).d();
199 if ((-
n[facei] & d) < 0.0)
203 dom.IRay(rayi).ILambda(lambdaId).boundaryField()[patchi];
205 const vector& rayDave = dom.IRay(rayi).dAve();
206 Ir[facei] += IFace[facei]*(
n[facei] & rayDave);
211 if (dom.useSolarLoad())
216 dom.primaryFluxName_ +
"_" +
name(lambdaId)
219 word qSecName = dom.relfectedFluxName_ +
"_" +
name(lambdaId);
221 if (this->db().foundObject<volScalarField>(qSecName))
232 if (dom.useExternalBeam())
234 const vector sunDir = dom.solarCalc().direction();
235 const scalar directSolarRad =
236 dom.solarCalc().directSolarRad()
237 *dom.spectralDistribution()[lambdaId];
241 scalar maxSunRay = -GREAT;
244 for (label rayI=0; rayI < dom.nRay(); rayI++)
246 const vector& iD = dom.IRay(rayI).d();
247 scalar dir = sunDir & iD;
255 if (rayId == SunRayId)
260 Iexternal[faceI] = directSolarRad/
mag(dom.IRay(rayId).dAve());
267 const vector& d = dom.IRay(rayId).d();
269 if ((-
n[facei] & d) > 0.0)
272 refGrad()[facei] = 0.0;
273 valueFraction()[facei] = 1.0;
275 Iexternal[facei]*transmissivity[facei]
277 Ir[facei]*(1.0 - emissivity[facei])
278 + emissivity[facei]*Eb[facei]
282 qem[facei] += refValue()[facei]*nAve[facei];
287 valueFraction()[facei] = 0.0;
288 refGrad()[facei] = 0.0;
289 refValue()[facei] = 0.0;
292 qin[facei] += Iw[facei]*nAve[facei];
299 mixedFvPatchScalarField::updateCoeffs();
Abstract base class with a fat-interface to all derived classes covering all possible ways in which t...
virtual void operator=(const UList< Type > &)
Field< scalar > scalarField
Specialisation of Field<T> for scalar.
A class for handling words, derived from Foam::string.
const volScalarField & qr() const
makePatchTypeField(fvPatchScalarField, greyDiffusiveRadiationMixedFvPatchScalarField)
A class for managing temporary objects.
static constexpr const zero Zero
Different types of constants.
static const boundaryRadiationProperties & New(const fvMesh &mesh, Args &&... args)
Radiation intensity for a ray in a given direction.
friend Ostream & operator(Ostream &, const fvPatchField< Type > &)
Field< vector > vectorField
Specialisation of Field<T> for vector.
tmp< scalarField > emissivity(const label patchI, const label bandI=0, vectorField *incomingDirection=nullptr, scalarField *T=nullptr) const
Generic templated field type.
This boundary condition provides a wide-band, diffusive radiation condition, where the patch temperat...
A finiteVolume patch using a polyPatch and a fvBoundaryMesh.
const vector & dAve() const
GeometricField< scalar, fvPatchField, volMesh > volScalarField
autoPtr< radiation::radiationModel > radiation(radiation::radiationModel::New(T))
Boundary radiation properties holder.
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
OBJstream os(runTime.globalPath()/outputName)
Macros for easy insertion into run-time selection tables.
Vector< scalar > vector
A scalar version of the templated Vector.
errorManipArg< error, int > exit(error &err, const int errNo=1)
wideBandDiffusiveRadiationMixedFvPatchScalarField(const fvPatch &, const DimensionedField< scalar, volMesh > &)
#define FatalErrorInFunction
static int & msgType() noexcept
constexpr scalar pi(M_PI)
Boundary & boundaryFieldRef(const bool updateAccessTime=true)
Top level model for radiation modelling.
dimensioned< typename typeOfMag< Type >::type > mag(const dimensioned< Type > &dt)
void write(vtk::formatter &fmt, const Type &val, const label n=1)
word name(const expressions::valueTypeCode typeCode)
Foam::fvPatchFieldMapper.
virtual void updateCoeffs()
tmp< scalarField > transmissivity(const label patchI, const label bandI=0, vectorField *incomingDirection=nullptr, scalarField *T=nullptr) const
An Ostream is an abstract base class for all output systems (streams, files, token lists,...
makePatchTypeField(fvPatchScalarField, atmBoundaryLayerInletEpsilonFvPatchScalarField)
virtual void write(Ostream &) const
Generic GeometricField class.
const Boundary & boundaryField() const
Field with dimensions and associated with geometry type GeoMesh which is used to size the field and a...
Finite Volume Discrete Ordinates Method. Solves the RTE equation for n directions in a participating ...