@@ -907,6 +907,11 @@ def pcol_2dxy(self, x, y):
907907        #lonmax = 51. 
908908        #latmin = -47. 
909909        #latmax = -24. 
910+ 
911+         #lonmin = -32.     # small test 
912+         #lonmax = -25. 
913+         #latmin = 20. 
914+         #latmax = 28. 
910915
911916
912917    elif  the_domain  in  'MedSea' :
@@ -1182,7 +1187,7 @@ def pcol_2dxy(self, x, y):
11821187
11831188            #rec_start_time = time.time() 
11841189            print  '--- AVISO_file:' , AVISO_file 
1185-                  
1190+             
11861191            # Holding variables 
11871192            A_eddy .reset_holding_variables ()
11881193            C_eddy .reset_holding_variables ()
@@ -1228,8 +1233,6 @@ def pcol_2dxy(self, x, y):
12281233
12291234            # Remove padded boundary 
12301235            sla  =  sla [sla_grd .jup0 :sla_grd .jup1 , sla_grd .iup0 :sla_grd .iup1 ]
1231-             #u = sla_grd.u[sla_grd.jup0:sla_grd.jup1, sla_grd.iup0:sla_grd.iup1] 
1232-             #v = sla_grd.v[sla_grd.jup0:sla_grd.jup1, sla_grd.iup0:sla_grd.iup1] 
12331236
12341237            # Calculate EKE 
12351238            sla_grd .getEKE ()
@@ -1240,14 +1243,8 @@ def pcol_2dxy(self, x, y):
12401243                okubo , xi  =  okubo_weiss (sla_grd )
12411244
12421245                qparam  =  np .ma .multiply (- 0.25 , okubo ) # see Kurian etal 2011 
1243-             
1244-                 #u = u[sla_grd.jup0:sla_grd.jup1, sla_grd.iup0:sla_grd.iup1] 
1245-                 #v = v[sla_grd.jup0:sla_grd.jup1, sla_grd.iup0:sla_grd.iup1] 
1246-                 #u = u2rho_2d(u) 
1247-                 #v = v2rho_2d(v) 
12481246
12491247                qparam  =  func_hann2d_fast (qparam , hanning_passes )
1250-                 #xi = func_hann2d_fast(xi, hanning_passes) 
12511248
12521249                # Set Q over land to zero 
12531250                qparam  *=  sla_grd .mask [sla_grd .jup0 :sla_grd .jup1 , sla_grd .iup0 :sla_grd .iup1 ]
@@ -1257,9 +1254,7 @@ def pcol_2dxy(self, x, y):
12571254                                                     sla_grd .iup0 :sla_grd .iup1 ] ==  False ,
12581255                                                     xi  /  sla_grd .f ()[sla_grd .jup0 :sla_grd .jup1 ,
12591256                                                                      sla_grd .iup0 :sla_grd .iup1 ])
1260-                 # Remove padded boundary 
1261-                 #qparam = qparam[sla_grd.jup0:sla_grd.jup1, sla_grd.iup0:sla_grd.iup1] 
1262-                 #xi = xi[sla_grd.jup0:sla_grd.jup1, sla_grd.iup0:sla_grd.iup1] 
1257+                 
12631258                xicopy  =  np .ma .copy (xi )
12641259
12651260            elif  'sla'  in  diag_type :
@@ -1280,7 +1275,7 @@ def pcol_2dxy(self, x, y):
12801275            # Get contours of Q/sla parameter 
12811276            if  'first_record'  not  in locals ():
12821277
1283-                 print  '------ getting  SLA contours' 
1278+                 print  '------ processing  SLA contours for eddies ' 
12841279                contfig  =  plt .figure (99 )
12851280                ax  =  contfig .add_subplot (111 )
12861281
@@ -1370,9 +1365,10 @@ def pcol_2dxy(self, x, y):
13701365                A_eddy .set_old_variables ()
13711366                C_eddy .set_old_variables ()
13721367                start  =  False 
1368+                 print  '------ tracking eddies' 
13731369            else :
13741370                first_record  =  False 
1375- 
1371+              
13761372
13771373            # Track the eddies 
13781374            #print 'start A tracking' 
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