checking correctness of displacements for 1D strain
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@ -2,6 +2,7 @@ import pytest
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import numpy as np
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from damask import grid_filters
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from damask import mechanics
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from damask import Grid
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from damask import seeds
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@ -36,7 +37,7 @@ class TestGridFilters:
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_cells,_size,_origin = eval(f'grid_filters.cellsSizeOrigin_coordinates0_{mode}(coord0.reshape(-1,3,order="F"))')
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assert np.allclose(cells,_cells) and np.allclose(size,_size) and np.allclose(origin,_origin)
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def test_displacement_fluct_equivalence(self):
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def test_displacement_fluct_periodic(self):
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"""Ensure that fluctuations are periodic.""" # noqa
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size = np.random.random(3)
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cells = np.random.randint(8,32,(3))
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@ -133,6 +134,19 @@ class TestGridFilters:
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assert np.allclose(u,grid_filters.displacement_fluct_point(size,F))
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def test_coordinates(self):
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cells = np.array([np.random.randint(40,100)*2,2,2])
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size = (np.random.rand(3)+0.8)*cells
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F = np.broadcast_to(np.eye(3),tuple(cells)+(3,3)).copy()
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F[...,0,0] += np.expand_dims(0.1*np.sin(np.linspace(0,2*np.pi,cells[0],False))+
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np.random.rand(cells[0])*0.05,(-1,-2))
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c_n = grid_filters.coordinates_node(size,F)[:,0,0,0]
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l_0 = (size/cells)[0]
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l = c_n[1:] - c_n[:-1]
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epsilon_reconstructed = (l-l_0)/l_0
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epsilon_direct = mechanics.strain(F,'V',1)[:,0,0,0,0]
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assert np.corrcoef(epsilon_reconstructed,epsilon_direct)[0,1] > 0.99
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@pytest.mark.parametrize('function',[grid_filters.cellsSizeOrigin_coordinates0_point,
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grid_filters.cellsSizeOrigin_coordinates0_node])
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