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rizer.cantera_ext
C++ Cantera 1-D plasma extension (custom Domain1D models and solvers)
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Output of a completed column solve. More...
#include <PlasmaColumnSolver.h>
Public Attributes | |
| std::vector< double > | r |
| radial grid [m] after refinement, r[0]=0, r[N-1]=R | |
| std::vector< double > | T |
| converged temperature [K] at each grid point | |
| std::vector< double > | sigma |
| electrical conductivity [S/m] evaluated at T | |
| std::vector< double > | kappa |
| thermal conductivity [W/m/K] evaluated at T | |
| double | current = 0.0 |
| I = 2π·E·∫sigma(T)·r dr [A], trapezoidal. | |
| double | electric_field = 0.0 |
| E [V/m] used for this solve. | |
| std::size_t | n_points = 0 |
| number of grid points after adaptive refinement | |
Output of a completed column solve.
Definition at line 26 of file PlasmaColumnSolver.h.
| double rizer::ColumnResult::current = 0.0 |
I = 2π·E·∫sigma(T)·r dr [A], trapezoidal.
Definition at line 31 of file PlasmaColumnSolver.h.
| double rizer::ColumnResult::electric_field = 0.0 |
E [V/m] used for this solve.
Definition at line 32 of file PlasmaColumnSolver.h.
| std::vector<double> rizer::ColumnResult::kappa |
thermal conductivity [W/m/K] evaluated at T
Definition at line 30 of file PlasmaColumnSolver.h.
| std::size_t rizer::ColumnResult::n_points = 0 |
number of grid points after adaptive refinement
Definition at line 33 of file PlasmaColumnSolver.h.
| std::vector<double> rizer::ColumnResult::r |
radial grid [m] after refinement, r[0]=0, r[N-1]=R
Definition at line 27 of file PlasmaColumnSolver.h.
| std::vector<double> rizer::ColumnResult::sigma |
electrical conductivity [S/m] evaluated at T
Definition at line 29 of file PlasmaColumnSolver.h.
| std::vector<double> rizer::ColumnResult::T |
converged temperature [K] at each grid point
Definition at line 28 of file PlasmaColumnSolver.h.