// Simulation parameters, cylindrical coordinates
793		// Number of points of the radial sample gridl
138		// Number of points of the axial sample grid
1000000.0	// Maximum gamma parameter allowed, dimensionless
1000		// maximun time allowed for integration, s
0.08		// Sample thermal conductivity W/(m K)
2230	     	// Sample Heat capacity Joules/(kg K)
1463 		// Sample density (kg/m3)
1.0e6	        // Reaction enthalpy [J/kg], 0 there is no reaction
4.5e13  	// Preexponential term [s-1]
175000	        // Activation energy Joules/mol
0.0024		// Sample radius m
39		// Vessel thermal conductivity W/(m K)
775	     	// Vessel Heat capacity Joules/(kg K)
3980		// Vessel density, (kg/m3)
0.0006		// Vessel thickness right side, m
0.0006		// Vessel thickness bottom side, m
20.0		// Constant temperature rise K/min
0.0		// Convection coefficient W/m^2/K
293.15		// Sourrounding gas temperature
-1 0.02		// Radius initially transformed, SHS combustion, m (-1 thermal explosion)
-1 0.02		// Height initially transformed, SHS combustion, m (-1 thermal explosion)
373	 	// Initial furnace temperature K
373	 	// Initial sample temperature K
1		// 1 Saves profiles at constant degree of transformation intervals, 0 temeprature intervals
10		// Number of images saved
10		// Number of profiles saved
10000		// Number of points of the time evolution file
100		// umber of points between data displayed on the screen
1e-14		// Maximum relative error allowed between iterations
1		// top boundary condition: 0 T=ct, 1 dx/dT=0, 2 dx/dT=ct
0		// bottom boundary condition: 0 T=ct, 1 dx/dT=0, 2 dx/dT=ct
0		// right boundary condition: 0 T=ct, 1 dx/dT=0, 2 dx/dT=ct
1,1		// File (radial) i column (axial) saved in teh profiles and analyzed for the front propagation

