TrioCFD 1.9.9_beta
TrioCFD documentation
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Source_WC_Chaleur.h
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15
16#ifndef Source_WC_Chaleur_included
17#define Source_WC_Chaleur_included
18
19#include <Source_Chaleur_Fluide_Dilatable_base.h>
20#include <TRUST_Ref.h>
21
23class Domaine_VF;
24
25/*! @brief class Source_WC_Chaleur
26 *
27 * This class represents an additional source term
28 * to account for in the heat equations
29 * when the fluid is weakly compressible
30 *
31 *
32 * @sa Source_Chaleur_Fluide_Dilatable_base Fluide_Weakly_Compressible
33 */
34
36{
37 Declare_base(Source_WC_Chaleur);
38
39public:
40 DoubleTab& ajouter(DoubleTab& ) const override;
41
42protected:
43 const DoubleTab& correct_grad_boundary(const Domaine_VF& domaine, DoubleTab& grad_Ptot) const;
44 virtual void compute_interpolate_gradP(DoubleTab& gradP, const DoubleTab& Ptot) const = 0;
45 DoubleTab& ajouter_(DoubleTab& ) const;
46
47
48};
49
50#endif /* Source_WC_Chaleur_included */
class Domaine_VF
Definition Domaine_VF.h:44
Fluide_Weakly_Compressible class This class represents a weakly compressible fluid,...
Additional source term for the heat equation when the fluid is quasi-compressible.
class Source_WC_Chaleur
DoubleTab & ajouter(DoubleTab &) const override
const DoubleTab & correct_grad_boundary(const Domaine_VF &domaine, DoubleTab &grad_Ptot) const
DoubleTab & ajouter_(DoubleTab &) const
Adds the weakly compressible source term d P_tot / d t = del P / del t + u.
virtual void compute_interpolate_gradP(DoubleTab &gradP, const DoubleTab &Ptot) const =0