22 #ifndef SCHNAKENBERGD2Q5V_HPP
23 #define SCHNAKENBERGD2Q5V_HPP
24 #include <LbmLib/include/solver/CDESolver/CDEAbstractSolver.hpp>
79 virtual double getC()
const;
90 virtual void loadSolver(std::stringstream*
const stream);
96 virtual void writeSolver(std::ostream*
const stream);
113 std::array<double, 5> distributions_;
122 static const std::string name;
127 #endif // SCHNAKENBERGD2Q5V_HPP
The Base class for all CDESolver implementations This classes uses the recursive template idiom to au...
the cde solver for the D2Q4 Schnakenberg turing pattern
The CDEDirectionsIteratorD2Q5 class Provides methods to handle the Directions. Use the Function Direc...
virtual void advect()
advect The advect step of the LBM
virtual ~SchnakenbergD2Q5v()
~CDESolverD2Q4 virtual Destructor
virtual void initSolver()
initSolver Use this to initalise the solver
virtual double calculateEquilibrium(const Direction &dir)
calculateEquilibrium calculates the equilibirum for direction dir
virtual void writeSolver(std::ostream *const stream)
writes the solver to the stream
virtual void collide()
collide The collision step of the LBM
virtual void loadSolver(std::stringstream *const stream)
loads the solver from the stream
virtual double & accessDistribution(const Direction &dir)
accessDistribution Access to the distribution
virtual void rescaleDistributions(const double factor)
Rescales all distributions by a factor.
virtual double getC() const
getC Calculates the concentration on this node
virtual void reinitialise()
reinitialise this solver as the corresponding physical node has switched domain