radiativeIntensityRayI.H
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25 
26 inline const Foam::volScalarField&
28 {
29  return I_;
30 }
31 
32 
33 inline const Foam::volScalarField&
35 {
36  return qr_;
37 }
38 
39 
41 {
42  return qr_;
43 }
44 
47 {
48  return qin_;
49 }
50 
51 
53 {
54  return qin_;
55 }
56 
57 
60 {
61  return qem_;
62 }
63 
64 
66 {
67  return qem_;
68 }
69 
70 
72 {
73  return d_;
74 }
75 
76 
78 {
79  return dAve_;
80 }
81 
82 
84 {
85  return nLambda_;
86 }
87 
88 
90 {
91  return phi_;
92 }
93 
94 
96 {
97  return theta_;
98 }
99 
100 
102 {
103  return omega_;
104 }
105 
106 
107 inline const Foam::volScalarField&
109 (
110  const label lambdaI
111 ) const
112 {
113  return ILambda_[lambdaI];
114 }
115 
116 
117 // ************************************************************************* //
intWM_LABEL_SIZE_t label
A label is an int32_t or int64_t as specified by the pre-processor macro WM_LABEL_SIZE.
Definition: label.H:59
volScalarField & qin()
Return non-const access to the boundary incident heat flux.
scalar phi() const
Return the phi angle.
const volScalarField & I() const
Return intensity.
scalar omega() const
Return the solid angle.
scalar nLambda() const
Return the number of bands.
const vector & d() const
Return direction.
const volScalarField & ILambda(const label lambdaI) const
Return the radiative intensity for a given wavelength.
volScalarField & qem()
Return non-const access to the boundary emmited heat flux.
const vector & dAve() const
Return the average vector inside the solid angle.
const volScalarField & qr() const
Return const access to the boundary heat flux.
scalar theta() const
Return the theta angle.