tudpate to new default pressure - 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 40e88f9865a7515575552bae55d42a85665742ff
 (DIR) parent 04f0dda8bcbf205fd4468c4f80a324dbbbf070f8
 (HTM) Author: Anders Damsgaard <anders.damsgaard@geo.au.dk>
       Date:   Mon, 10 Nov 2014 13:32:04 +0100
       
       udpate to new default pressure
       
       Diffstat:
         M tests/cfd_tests_darcy_particles.py  |      12 ++++++------
       
       1 file changed, 6 insertions(+), 6 deletions(-)
       ---
 (DIR) diff --git a/tests/cfd_tests_darcy_particles.py b/tests/cfd_tests_darcy_particles.py
       t@@ -24,9 +24,9 @@ orig.run(verbose=False)
        py = sphere.sim(sid = orig.sid, fluid = True)
        py.readlast(verbose=False)
        
       -ones = numpy.ones((orig.num))
       +zeros = numpy.zeros((orig.num))
        py.readlast(verbose = False)
       -compareNumpyArrays(ones, py.p_f, "Conservation of pressure:")
       +compareNumpyArrays(zeros, py.p_f, "Conservation of pressure:")
        
        # Fluid flow should be very small
        if ((numpy.abs(py.v_f[:,:,:,:]) < 1.0e-6).all()):
       t@@ -61,9 +61,9 @@ orig.run(verbose=False)
        py = sphere.sim(sid = orig.sid, fluid = True)
        py.readlast(verbose=False)
        
       -ones = numpy.ones((orig.num))
       +zeros = numpy.zeros((orig.num))
        py.readlast(verbose = False)
       -compareNumpyArrays(ones, py.p_f, "Conservation of pressure:")
       +compareNumpyArrays(zeros, py.p_f, "Conservation of pressure:")
        
        # Fluid flow should be very small
        if ((numpy.abs(py.v_f[:,:,:,:]) < 1.0e-6).all()):
       t@@ -99,9 +99,9 @@ orig.run(verbose=False)
        py = sphere.sim(sid = orig.sid, fluid = True)
        py.readlast(verbose=False)
        
       -ones = numpy.ones((orig.num))
       +zeros = numpy.zeros((orig.num))
        py.readlast(verbose = False)
       -compareNumpyArrays(ones, py.p_f, "Conservation of pressure:")
       +compareNumpyArrays(zeros, py.p_f, "Conservation of pressure:")
        
        # Fluid flow should be very small
        if ((numpy.abs(py.v_f[:,:,:,:]) < 1.0e-6).all()):