%data -> ErgebnisMatrix
data = size(G_E,1);
%save_* -> ZwischenSpeicherung
- save_A = {};
- save_x = {};
+% save_A = {};
+% save_x = {};
%Alle MatrixBrechenungsArten mit dem selben Netz berechnen
for i = 1:length(type)
xe_fine = x_fine'*A_fine*x_fine;
xe = x'*A*x;
- save_A{i} = A_fine;
- save_x{i} = x_fine;
+% save_A{i} = A_fine;
+% save_x{i} = x_fine;
out = varargin{1};
end
typeN = int2str(type);
- save (['meshSave/fine_' out typeN(typeN~=' ') '_' int2str(size(G_T,1))],...
- 'coo_fine', 'ele_fine','neigh_fine','f2s','time','data','save_A','save_x')
+% save (['meshSave/fine_' out typeN(typeN~=' ') '_' int2str(size(G_T,1))],...
+% 'coo_fine', 'ele_fine','neigh_fine','f2s','time','data','save_A','save_x')
% clear 'coo_fine' 'ele_fine' 'neigh_fine' 'f2s'
% plotShape(G_C,G_E,'');
% Test ausführen
%Anzahl der Schritte
-steps = 35;
+steps = 33;
%LShape adaptiv anisotrop
A_run('exmpl_2DQuad', steps, 0.7, [ 1], 0.5, 0.5, 'testAA_')