TrioCFD 1.9.9_beta
TrioCFD documentation
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Transport_turbulent_aire_interfaciale.h
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15
16#ifndef Transport_turbulent_aire_interfaciale_included
17#define Transport_turbulent_aire_interfaciale_included
18
19#include <Transport_turbulent_base.h>
20#include <TRUSTTab.h>
21
22/*! @brief Turbulent transport of interfacial area, using the closure:
23 *
24 * < u'_i theta'> = - nu_t / Pr_t d_i theta = - sigma_t nu_t d_i theta
25 * (the user may supply either sigma_t or Pr_t)
26 *
27 */
29{
30 Declare_instanciable(Transport_turbulent_aire_interfaciale);
31public:
32 int dimension_min_nu() const override
33 {
34 return 1; //isotrope
35 }
36 void modifier_mu(const Convection_Diffusion_std& eq, const Viscosite_turbulente_base& visc_turb, DoubleTab& nu) const override;
37
38
39private :
40 int n_g2=-1 ;
41 double cst_diff = 0.236 ; //2sqrt(2)/6*1/2 - ng2 : 2sqrt(2)/6*7/4
42};
43
44#endif /* Transport_turbulent_aire_interfaciale_included */
45
Convection_Diffusion_std This class is the base for equations modelling the transport.
Turbulent transport of interfacial area, using the closure:
void modifier_mu(const Convection_Diffusion_std &eq, const Viscosite_turbulente_base &visc_turb, DoubleTab &nu) const override
Correlations describing the effect of turbulence in another equation (thermal, turbulent quantities,...
Turbulent viscosity correlations describing the Reynolds stress tensor R_{ij} = - <u'_i u'_j>.