Improved/corrected header descriptions in map files
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@ -1,6 +1,9 @@
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31 221 mm 1e-6
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31 221 mm 1e-5
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% nr nz length_unit norm_fact
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% nr nz length_unit norm_fact
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% A norm_fact 1e-6 converts V/m (FL) to kV/mm (G4).
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% This FemLab model uses dm, therefore norm_fact = norm_fact*1e1.
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% Exported from L3.fl -> 4 level meshing, 230272 elements.
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%
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%
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0 -220 -0.017724 -16.134
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0 -220 -0.017724 -16.134
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0 -218 0.0089113 -16.195
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0 -218 0.0089113 -16.195
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@ -1,6 +1,9 @@
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31 101 mm 1e-6
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31 101 mm 1e-5
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% nr nz length_unit norm_fact
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% nr nz length_unit norm_fact
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% A norm_fact 1e-6 converts V/m (FL) to kV/mm (G4).
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% This FemLab model uses dm, therefore norm_fact = norm_fact*1e1.
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% Exported from L3.fl -> 4 level meshing, 230272 elements.
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%
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%
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0 0 -0.002924 0.0030064
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0 0 -0.002924 0.0030064
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0 2 0.0037186 38.882
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0 2 0.0037186 38.882
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File diff suppressed because it is too large
Load Diff
@ -1,8 +1,13 @@
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59 59 137 mm 1e-3 -58 58 -58 58 -136 136
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59 59 137 mm 1e-3 -58 58 -58 58 -136 136
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%nx ny nz l_unit norm_fact ranges x-y-z (mm)
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%nx ny nz l_unit norm_fact ranges x-y-z (mm)
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% norm_fact = 1e-3 converts current values to kV/mm. Since they were already
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% Ex (V/m) Ey(V/m) Ez (V/m)
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% multiplied by 1e-3 (V/m = 1e-6 kV/mm) during export, hence norm_fact = 1e-3.
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% A norm_fact 1e-6 converts V/m (FL) to kV/mm (G4).
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% Ex (kV/m) Ey(kV/m) Ez (kV/m)
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% This FemLab model uses mm, therefore norm_fact = norm_fact*1e3.
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%
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% Exported from RA_1kV_up.mph -> free meshing, 1149769 elements
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% Element growth rate: 1.5 -> 1.15, Mesh curvature factor: 0.6 -> 0.15
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% Solver "Conjugate gradients" with "Algebraic multigrid" preconditioner
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% Coarse solver "PARDISO". Solving time ca. 3 h.
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%
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%
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3.8923e-18 -3.1028e-18 -0.00012432
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3.8923e-18 -3.1028e-18 -0.00012432
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9.0637e-05 -9.0302e-05 -0.00011907
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9.0637e-05 -9.0302e-05 -0.00011907
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@ -1,7 +1,8 @@
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48 51 mm 1e-6
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48 51 mm 1e-4
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% nr nz length_unit norm_fact
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% nr nz length_unit norm_fact
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% norm_fact = 1e-6 converts current values to 1 kV/mm
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% A norm_fact 1e-6 converts V/m (FL) to kV/mm (G4).
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% This FemLab model uses cm, therefore norm_fact = norm_fact*1e2.
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% Exported from sample.fl -> 5 level meshing, 214272 elements
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% Exported from sample.fl -> 5 level meshing, 214272 elements
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%
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%
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0 -25 0.01491 -206.76
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0 -25 0.01491 -206.76
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@ -1,7 +1,8 @@
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48 51 mm 1e-6
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48 51 mm 1e-4
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% nr nz length_unit norm_fact
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% nr nz length_unit norm_fact
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% norm_fact = 1e-6 converts current values to 1 kV/mm
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% A norm_fact 1e-6 converts V/m (FL) to kV/mm (G4).
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% This FemLab model uses cm, therefore norm_fact = norm_fact*1e2.
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% Exported from sample.fl -> 5 level meshing, 214272 elements
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% Exported from sample.fl -> 5 level meshing, 214272 elements
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%
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%
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0 -25 -0.0025953 -81.383
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0 -25 -0.0025953 -81.383
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@ -1,7 +1,8 @@
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48 51 mm 1e-6
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48 51 mm 1e-4
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% nr nz length_unit norm_fact
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% nr nz length_unit norm_fact
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% r(mm) z(mm) Er (V/m) Ez (V/m)
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% norm_fact = 1e-6 converts current values to 1 kV/mm
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% A norm_fact 1e-6 converts V/m (FL) to kV/mm (G4).
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% This FemLab model uses cm, therefore norm_fact = norm_fact*1e2.
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% Exported from sample.fl -> 5 level meshing, 214272 elements
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% Exported from sample.fl -> 5 level meshing, 214272 elements
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%
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%
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0 -25 -0 -57.306
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0 -25 -0 -57.306
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