driven_cavity_with_simple_lsc_preconditioner.cc File Reference

Classes

class  SimpleLSCPreconditioner
 
class  oomph::MyTaylorHoodElement< DIM >
 Overload TaylorHood element to modify output. More...
 
class  RectangularDrivenCavityProblem< ELEMENT >
 Driven cavity problem in rectangular domain. More...
 

Namespaces

 oomph
 DRAIG: Change all instances of (SPATIAL_DIM) to (DIM-1).
 
 Global_Physical_Variables
 Global variables.
 

Functions

int main (int argc, char **argv)
 

Function Documentation

◆ main()

int main ( int argc  ,
char **  argv 
)

///////////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////////// Driver for RectangularDrivenCavity test problem – test drive with two different types of element. Optional command line args specify multiplier for number of element rows/columns and flag to indicate if iterative solver is used. Multiplier and flag both default to 1.

1029 {
1030 
1031  // Label for output
1032  DocInfo doc_info;
1033 
1034  // Set output directory
1035  doc_info.set_directory("RESLT");
1036 
1037  // Build the problem with "my" TaylorHood elements
1039 
1040  // Solve the problem
1041  problem.newton_solve();
1042 
1043  // Outpt the solution
1044  problem.doc_solution(doc_info);
1045 
1046 } // end_of_main
Driven cavity problem in rectangular domain.
Definition: linear_solvers/driven_cavity.cc:77
Definition: oomph_utilities.h:499
void set_directory(const std::string &directory)
Definition: oomph_utilities.cc:298
Constructor for SteadyAxisymAdvectionDiffusion problem
Definition: steady_axisym_advection_diffusion.cc:213

References problem, and oomph::DocInfo::set_directory().