TrioCFD 1.9.8
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Eval_Diff_K_Eps_VDF_leaves.h
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15
16#ifndef Eval_Diff_K_Eps_VDF_leaves_included
17#define Eval_Diff_K_Eps_VDF_leaves_included
18
19#include <Eval_Diff_K_Eps_VDF_const.h>
20#include <Eval_Diff_K_Eps_VDF_var.h>
21#include <Eval_Diff_VDF_Elem_Gen.h>
22
23/// \cond DO_NOT_DOCUMENT
24class Eval_Diff_K_Eps_VDF_leaves { };
25/// \endcond
26
27// const
28class Eval_Diff_K_Eps_VDF_Elem : public Eval_Diff_VDF_Elem_Gen<Eval_Diff_K_Eps_VDF_Elem>, public Eval_Diff_K_Eps_VDF_const
29{
30public:
31 static constexpr bool IS_MULTD = false, IS_RANS = true;
32};
33
34class Eval_Diff_K_Eps_VDF_Elem_Axi : public Eval_Diff_VDF_Elem_Gen<Eval_Diff_K_Eps_VDF_Elem_Axi>, public Eval_Diff_K_ou_Eps_VDF_const
35{
36public:
37 static constexpr bool IS_MULTD = false, IS_AXI = true, IS_RANS = true;
38};
39
40class Eval_Diff_K_Eps_QC_VDF_Elem : public Eval_Diff_VDF_Elem_Gen<Eval_Diff_K_Eps_QC_VDF_Elem>, public Eval_Diff_K_Eps_VDF_const
41{
42public:
43 static constexpr bool IS_MULTD = false, IS_QUASI = true, IS_RANS = true;
44};
45
46// var
47class Eval_Diff_K_Eps_var_VDF_Elem : public Eval_Diff_VDF_Elem_Gen<Eval_Diff_K_Eps_var_VDF_Elem>, public Eval_Diff_K_Eps_VDF_var
48{
49public:
50 static constexpr bool IS_RANS = true;
51};
52
53class Eval_Diff_K_Eps_QC_var_VDF_Elem : public Eval_Diff_VDF_Elem_Gen<Eval_Diff_K_Eps_QC_var_VDF_Elem>, public Eval_Diff_K_Eps_VDF_var
54{
55public:
56 static constexpr bool IS_MULTD = false, IS_QUASI = true, IS_RANS = true;
57};
58
59// Bicephale
61{
62public:
63 static constexpr bool IS_MULTD = false, IS_RANS = true;
64};
65
67{
68public:
69 static constexpr bool IS_MULTD = false, IS_RANS = true;
70};
71
72#endif /* Eval_Diff_K_Eps_VDF_leaves_included */
static constexpr bool IS_MULTD
static constexpr bool IS_RANS
class Eval_Diff_VDF_Elem_Gen Evaluateur VDF pour la diffusion : Le champ diffuse est un Champ_P0_VDF