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Update Spectrum/Particle-In-Cell Test
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Michaël J TOUATI committed Nov 3, 2021
1 parent 046b38b commit 1183704
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8 changes: 8 additions & 0 deletions makefile
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Expand Up @@ -274,5 +274,13 @@ test :
fi ; \
done
@rm -rf results/Vlasov
@rm -rf results/Fokker-Planck
@rm -rf results/Laser-solid-interaction
@rm -rf results/MHD
@rm -rf results/Parallelization
@rm -rf results/Plasmas
@rm -rf results/Solids
@rm -rf results/Spectrum
@rm -rf results/X-rays
@mv input-deck-old input-deck
@rm -f test.output
2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Bi-temperature/input-deck
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Vlasov
#simu Spectrum
#
#N_threads 1
#
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2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Bi-temperature/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Vlasov
simu = Spectrum
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
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2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Boltzmannian/input-deck
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Vlasov
#simu Spectrum
#
#N_threads 1
#
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2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Boltzmannian/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Vlasov
simu = Spectrum
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
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2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Gaussian/input-deck
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Vlasov
#simu Spectrum
#
#N_threads 1
#
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2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Gaussian/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Vlasov
simu = Spectrum
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Vlasov
#simu Spectrum
#
#N_threads 1
#
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2 changes: 1 addition & 1 deletion test-cases/Tests/Spectrum/Modified-bi-temperature/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Vlasov
simu = Spectrum
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
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6 changes: 3 additions & 3 deletions test-cases/Tests/Spectrum/Particle-In-Cell/input-deck
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Vlasov
#simu Spectrum
#
#N_threads 1
#
Expand Down Expand Up @@ -123,9 +123,9 @@
#
#L_x 60.
#
#d_eps 10.
#d_eps 20.
#
#eps_min 10.
#eps_min 20.
#
#L_eps 9.e3
#
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154 changes: 77 additions & 77 deletions test-cases/Tests/Spectrum/Particle-In-Cell/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Vlasov
simu = Spectrum
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
Expand Down Expand Up @@ -36,8 +36,8 @@
L_z = 0.90000000000000E+01
d_x = 0.60000000000000E+01
L_x = 0.60000000000000E+02
eps_min = 0.10000000000000E+02
d_eps = 0.10000000000000E+02
eps_min = 0.20000000000000E+02
d_eps = 0.20000000000000E+02
L_eps = 0.90000000000000E+04
-----------------------------------------
* Target properties :
Expand All @@ -49,7 +49,7 @@
* Deduced simulation parameters :
N_z = 3
N_x = 10
N_eps = 900
N_eps = 450
-----------------------------------------

Initialization of the simulation
Expand All @@ -58,7 +58,7 @@
t = 0.0000000E+00 fs
( iteration : 1 )
==========================
* Time integrated injected energy = 0.3059154E-03 J
* Time integrated injected energy = 0.3620874E-03 J
* Instantaneous beam energy = 0.0000000E+00 J
* Energy deposited : = 0.0000000E+00 J
* due to collisions = 0.0000000E+00 J
Expand All @@ -72,87 +72,87 @@
* downward = 0.0000000E+00 J
-> ENERGY CONSERVATION ERROR =100.00 %
==========================
t = 0.3037384E+02 fs
( iteration : 15 )
t = 0.3116905E+02 fs
( iteration : 13 )
==========================
* Time integrated injected energy = 0.2844584E+00 J
* Instantaneous beam energy = 0.2359489E+00 J
* Energy deposited : = 0.1380291E-03 J
* due to collisions = 0.5112370E-04 J
* due to Ohmic heating = 0.8690523E-04 J
* Instantaneous electric energy = 0.1824486E-06 J
* Instantaneous magnetic energy = 0.2437312E-08 J
* Time integrated escaped energy = 0.3801536E-02 J
* forward = 0.3801536E-02 J
* Time integrated injected energy = 0.3240192E+00 J
* Instantaneous beam energy = 0.2544299E+00 J
* Energy deposited : = 0.1732011E-03 J
* due to collisions = 0.5793802E-04 J
* due to Ohmic heating = 0.1152628E-03 J
* Instantaneous electric energy = 0.2189160E-06 J
* Instantaneous magnetic energy = 0.2756845E-08 J
* Time integrated escaped energy = 0.4208508E-02 J
* forward = 0.4208508E-02 J
* backward = 0.0000000E+00 J
* upward = 0.2248302E-10 J
* downward = 0.2248302E-10 J
-> ENERGY CONSERVATION ERROR = 15.67 %
* upward = 0.2290927E-10 J
* downward = 0.2290927E-10 J
-> ENERGY CONSERVATION ERROR = 20.12 %
==========================
t = 0.6011520E+02 fs
( iteration : 63 )
t = 0.6007085E+02 fs
( iteration : 41 )
==========================
* Time integrated injected energy = 0.1748038E+01 J
* Instantaneous beam energy = 0.1421596E+01 J
* Energy deposited : = 0.2799231E-01 J
* due to collisions = 0.9213890E-03 J
* due to Ohmic heating = 0.2707119E-01 J
* Instantaneous electric energy = 0.2021358E-04 J
* Instantaneous magnetic energy = 0.5134442E-05 J
* Time integrated escaped energy = 0.3121432E+00 J
* forward = 0.3121432E+00 J
* Time integrated injected energy = 0.1747053E+01 J
* Instantaneous beam energy = 0.1427092E+01 J
* Energy deposited : = 0.2799440E-01 J
* due to collisions = 0.9092996E-03 J
* due to Ohmic heating = 0.2708536E-01 J
* Instantaneous electric energy = 0.2038689E-04 J
* Instantaneous magnetic energy = 0.4790633E-05 J
* Time integrated escaped energy = 0.3060632E+00 J
* forward = 0.3060632E+00 J
* backward = 0.0000000E+00 J
* upward = 0.7147272E-08 J
* downward = 0.7147273E-08 J
-> ENERGY CONSERVATION ERROR = -0.78 %
* upward = 0.6574720E-08 J
* downward = 0.6574720E-08 J
-> ENERGY CONSERVATION ERROR = -0.81 %
==========================
t = 0.9104593E+02 fs
( iteration : 105 )
t = 0.9040250E+02 fs
( iteration : 67 )
==========================
* Time integrated injected energy = 0.1963972E+01 J
* Instantaneous beam energy = 0.4921497E+00 J
* Energy deposited : = 0.4868376E-01 J
* due to collisions = 0.1986398E-02 J
* due to Ohmic heating = 0.4669851E-01 J
* Instantaneous electric energy = 0.8493041E-06 J
* Instantaneous magnetic energy = 0.3022276E-04 J
* Time integrated escaped energy = 0.1448785E+01 J
* forward = 0.1448785E+01 J
* backward = 0.1502291E-06 J
* upward = 0.9699368E-07 J
* downward = 0.9699376E-07 J
-> ENERGY CONSERVATION ERROR = -1.31 %
* Time integrated injected energy = 0.1959367E+01 J
* Instantaneous beam energy = 0.5110662E+00 J
* Energy deposited : = 0.4867132E-01 J
* due to collisions = 0.1953234E-02 J
* due to Ohmic heating = 0.4671920E-01 J
* Instantaneous electric energy = 0.9023294E-06 J
* Instantaneous magnetic energy = 0.2935228E-04 J
* Time integrated escaped energy = 0.1441371E+01 J
* forward = 0.1441371E+01 J
* backward = 0.0000000E+00 J
* upward = 0.9357508E-07 J
* downward = 0.9357515E-07 J
-> ENERGY CONSERVATION ERROR = -2.13 %
==========================
t = 0.1209964E+03 fs
( iteration : 124 )
t = 0.1212828E+03 fs
( iteration : 82 )
==========================
* Time integrated injected energy = 0.1963972E+01 J
* Instantaneous beam energy = 0.6591651E-01 J
* Energy deposited : = 0.4946458E-01 J
* due to collisions = 0.2250433E-02 J
* due to Ohmic heating = 0.4721535E-01 J
* Instantaneous electric energy = 0.2009427E-07 J
* Instantaneous magnetic energy = 0.3693010E-04 J
* Time integrated escaped energy = 0.1840895E+01 J
* forward = 0.1840895E+01 J
* backward = 0.5210892E-06 J
* upward = 0.2558284E-06 J
* downward = 0.2558293E-06 J
-> ENERGY CONSERVATION ERROR = 0.39 %
* Time integrated injected energy = 0.1959367E+01 J
* Instantaneous beam energy = 0.6177249E-01 J
* Energy deposited : = 0.4944834E-01 J
* due to collisions = 0.2208886E-02 J
* due to Ohmic heating = 0.4724061E-01 J
* Instantaneous electric energy = 0.1823794E-07 J
* Instantaneous magnetic energy = 0.3625313E-04 J
* Time integrated escaped energy = 0.1841540E+01 J
* forward = 0.1841540E+01 J
* backward = 0.2586064E-06 J
* upward = 0.2604999E-06 J
* downward = 0.2605009E-06 J
-> ENERGY CONSERVATION ERROR = 0.34 %
==========================
t = 0.1484657E+03 fs
( iteration : 139 )
t = 0.1485241E+03 fs
( iteration : 94 )
==========================
* Time integrated injected energy = 0.1963972E+01 J
* Instantaneous beam energy = 0.1176737E-01 J
* Energy deposited : = 0.4954141E-01 J
* due to collisions = 0.2316462E-02 J
* due to Ohmic heating = 0.4722614E-01 J
* Instantaneous electric energy = 0.2976157E-08 J
* Instantaneous magnetic energy = 0.3850147E-04 J
* Time integrated escaped energy = 0.1885980E+01 J
* forward = 0.1885980E+01 J
* backward = 0.1990223E-05 J
* upward = 0.3664177E-06 J
* downward = 0.3664180E-06 J
* Time integrated injected energy = 0.1959367E+01 J
* Instantaneous beam energy = 0.1112144E-01 J
* Energy deposited : = 0.4951171E-01 J
* due to collisions = 0.2262876E-02 J
* due to Ohmic heating = 0.4724998E-01 J
* Instantaneous electric energy = 0.2849455E-08 J
* Instantaneous magnetic energy = 0.3774027E-04 J
* Time integrated escaped energy = 0.1882024E+01 J
* forward = 0.1882024E+01 J
* backward = 0.2265900E-05 J
* upward = 0.3705438E-06 J
* downward = 0.3705441E-06 J
-> ENERGY CONSERVATION ERROR = 0.85 %
2 changes: 1 addition & 1 deletion test-cases/Tests/X-rays/Kalpha/input-deck
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Laser-solid-interaction
#simu X-rays
#
#N_threads 1
#
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2 changes: 1 addition & 1 deletion test-cases/Tests/X-rays/Kalpha/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Laser-solid-interaction
simu = X-rays
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
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2 changes: 1 addition & 1 deletion test-cases/Tests/X-rays/Tracer/input-deck
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Expand Up @@ -91,7 +91,7 @@
#########################################################################
#########################################################################
#
#simu Laser-solid-interaction
#simu X-rays
#
#N_threads 1
#
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2 changes: 1 addition & 1 deletion test-cases/Tests/X-rays/Tracer/output
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Expand Up @@ -2,7 +2,7 @@
Recapitulation of simulation parameters :
-----------------------------------------
* Simulation :
simu = Laser-solid-interaction
simu = X-rays
-----------------------------------------
* Number of OpenMP threads :
N_threads = 1
Expand Down

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