phaseflow
FEM solver for the Navier-Stokes-Boussinesq equations coupled with enthalpy-based phase change
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pf_global_parameters.h
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1 #ifndef pf_global_parameters_h
2 #define pf_global_parameters_h
3 
10 const bool ENERGY_ENABLED = true;
12 const double RAYLEIGH_NUMBER = 1.e6;
14 const double PRANDTL_NUMBER = 0.71;
16 const double REYNOLDS_NUMBER = 1.;
17 
18 const double SOLID_CONDUCTIVITY = 1.;
20 const double LIQUID_CONDUCTIVITY = 2.;
22 const unsigned int SCALAR_DEGREE = 1;
24 const double EPSILON = 1.e-14;
26 const bool WRITE_LINEAR_SYSTEM = true;
28 const double TIME_GROWTH_RATE = 2.;
30 const std::set<dealii::types::boundary_id> ADIABATIC_WALLS = {2, 3};
32 const unsigned int MAX_TIME_STEP = 1000000;
34 std::vector<std::string> FIELD_NAMES({"velocity", "pressure", "temperature"});
35 
36 #endif
const double LIQUID_CONDUCTIVITY
Definition: pf_global_parameters.h:20
const unsigned int MAX_TIME_STEP
Definition: pf_global_parameters.h:32
const unsigned int SCALAR_DEGREE
Definition: pf_global_parameters.h:22
const double EPSILON
Definition: pf_global_parameters.h:24
const std::set< dealii::types::boundary_id > ADIABATIC_WALLS
Definition: pf_global_parameters.h:30
const double REYNOLDS_NUMBER
Definition: pf_global_parameters.h:16
std::vector< std::string > FIELD_NAMES({"velocity","pressure","temperature"})
const double SOLID_CONDUCTIVITY
Definition: pf_global_parameters.h:18
const bool WRITE_LINEAR_SYSTEM
Definition: pf_global_parameters.h:26
const double RAYLEIGH_NUMBER
Definition: pf_global_parameters.h:12
const double TIME_GROWTH_RATE
Definition: pf_global_parameters.h:28
const bool ENERGY_ENABLED
Definition: pf_global_parameters.h:10
const double PRANDTL_NUMBER
Definition: pf_global_parameters.h:14