]> git.leopard-lacewing.eu Git - bacc.git/commitdiff
[data] testAA_1_ +33 -30
authorPeter Schaefer <peter.schaefer@tuwien.ac.at>
Mon, 26 Mar 2012 06:13:14 +0000 (08:13 +0200)
committerPeter Schaefer <peter.schaefer@tuwien.ac.at>
Mon, 26 Mar 2012 06:13:14 +0000 (08:13 +0200)
src/A_step.m
src/meshSave/testAA_1_30.mat [deleted file]
src/meshSave/testAA_1_33.mat [new file with mode: 0644]
src/test_sol.m

index f86523450222735de34e800de98320aebf09c563..48f0b1a4b4f0febdaa586b5ff110187d8a12133f 100644 (file)
@@ -44,8 +44,8 @@ time = zeros(1,3);
   %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)
@@ -91,8 +91,8 @@ time = zeros(1,3);
     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;
     
     
     
@@ -141,8 +141,8 @@ time = zeros(1,3);
      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,'');
diff --git a/src/meshSave/testAA_1_30.mat b/src/meshSave/testAA_1_30.mat
deleted file mode 100644 (file)
index 081704a..0000000
Binary files a/src/meshSave/testAA_1_30.mat and /dev/null differ
diff --git a/src/meshSave/testAA_1_33.mat b/src/meshSave/testAA_1_33.mat
new file mode 100644 (file)
index 0000000..85464b2
Binary files /dev/null and b/src/meshSave/testAA_1_33.mat differ
index 846f7dbee8261d04d626d00a51a3dfc110bed321..76bcb4c09d460ad6a1a0f7123605dc685031fd68 100644 (file)
@@ -7,7 +7,7 @@ mex mex_build_AU.cpp slpRectangle.cpp
 % 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_')