radiativeIntensityRayI.H
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27
28inline const Foam::volScalarField&
30{
31 return I_;
32}
33
34
35inline const Foam::volScalarField&
37{
38 return qr_;
39}
40
41
43{
44 return qr_;
45}
46
49{
50 return qin_;
51}
52
53
55{
56 return qin_;
57}
58
59
62{
63 return qem_;
64}
65
66
68{
69 return qem_;
70}
71
72
74{
75 return d_;
76}
77
78
80{
81 return dAve_;
82}
83
84
86{
87 return d_;
88}
89
90
92{
93 return dAve_;
94}
95
96
98{
99 return nLambda_;
100}
101
102
104{
105 return phi_;
106}
107
108
110{
111 return theta_;
112}
113
114
116{
117 return omega_;
118}
119
120
121inline const Foam::volScalarField&
123(
124 const label lambdaI
125) const
126{
127 return ILambda_[lambdaI];
128}
129
130
131// ************************************************************************* //
const vector & dAve() const
Return the average vector inside the solid angle.
scalar theta() const
Return the theta angle.
const volScalarField & ILambda(const label lambdaI) const
Return the radiative intensity for a given wavelength.
const vector & d() const
Return direction.
const volScalarField & I() const
Return intensity.
scalar nLambda() const
Return the number of bands.
scalar omega() const
Return the solid angle.
const volScalarField & qr() const
Return const access to the boundary heat flux.
volScalarField & qin()
Return non-const access to the boundary incident heat flux.
scalar phi() const
Return the phi angle.
volScalarField & qem()
Return non-const access to the boundary emitted heat flux.