tupdate visualization calls - sphere - GPU-based 3D discrete element method algorithm with optional fluid coupling
 (HTM) git clone git://src.adamsgaard.dk/sphere
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       ---
 (DIR) commit 3ba16ef6f5516766c0782734548a028c9144f86d
 (DIR) parent 450a1d581e1876b7e74bfb6c9e7c450e44eebcee
 (HTM) Author: Anders Damsgaard <anders.damsgaard@geo.au.dk>
       Date:   Wed, 20 May 2015 09:29:42 +0200
       
       update visualization calls
       
       Diffstat:
         M python/shear-test.py                |      13 +++++--------
       
       1 file changed, 5 insertions(+), 8 deletions(-)
       ---
 (DIR) diff --git a/python/shear-test.py b/python/shear-test.py
       t@@ -52,7 +52,7 @@ if (initialization == True):
        
            if (plots == True):
                # Make a graph of energies
       -        visualize(init.sid, "energy", savefig=True, outformat='png')
       +        init.visualize('energy')
        
            init.writeVTKall()
        
       t@@ -83,9 +83,6 @@ for devs in devslist:
        
            # Set duration of simulation
            cons.initTemporal(total = 1.5)
       -    #cons.initTemporal(total = 0.0019, file_dt = 0.00009)
       -    #cons.initTemporal(total = 0.0019, file_dt = 1e-6)
       -    #cons.initTemporal(total = 0.19, file_dt = 0.019)
        
            """
            cons.w_m[0] *= 0.001
       t@@ -104,8 +101,8 @@ for devs in devslist:
        
                if (plots == True):
                    # Make a graph of energies
       -            visualize(cons.sid, "energy", savefig=True, outformat='png')
       -            visualize(cons.sid, "walls", savefig=True, outformat='png')
       +            cons.visualize('energy')
       +            cons.visualize('walls')
        
                cons.writeVTKall()
        
       t@@ -140,8 +137,8 @@ for devs in devslist:
        
                if (plots == True):
                    # Make a graph of energies
       -            visualize(shear.sid, "energy", savefig=True, outformat='png')
       -            visualize(shear.sid, "shear", savefig=True, outformat='png')
       +            shear.visualize('energy')
       +            shear.visualize('shear')
        
                shear.writeVTKall()