|
LogFile: CLASS.log opened.
|
|
!!INFO!! !!!CLASS!!! A Parc has been define :
|
|
Print set at : 0.999316 year
|
|
StockManagement set at : true
|
|
OutPut will be in "CLASS_Default.root" File and "Data" TTree
|
|
Log will be in CLASS.log
|
|
DB Definition...
|
|
-decay !!INFO!! !!!DataBank<ZAI>!!! A EvolutionData<ZAI> has been define :
|
|
His index is : "/produits/sec/CODES/CLASS/CLASS_V3.0_02_2014/DataBase/Decay.idx"
|
|
|
|
...OK!
|
|
-MOX !!INFO!! !!!DataBank<IsotopicVector>!!! A EvolutionData<ZAI> has been define :
|
|
His index is : "/produits/sec/CODES/CLASS/CLASS_V3.0_02_2014/DataBase/Data_REP_MOX_IRSN/REP_MOX_BU_40.idx"
|
|
865 EvolutionData have been read.
|
|
|
|
Calculation of Distance Parameters :
|
|
...OK!
|
|
-UOx ...OK!
|
|
DB Definition... ...Done!
|
|
Storage Definition...
|
|
!!INFO!! !!!Storage!!! A new Storage has been define.
|
|
!!INFO!! !!!Storage!!! A new Storage has been define.
|
|
...OK!
|
|
Creation d'un stock initial
|
|
Pool Definition...
|
|
!!INFO!! !!!Pool!!! A new Pool has been define :
|
|
Creation time set at -0.999316 year
|
|
The Cooling Time set at 4.99932 year
|
|
!!INFO!! !!!Pool!!! A new Pool has been define :
|
|
Creation time set at -0.999316 year
|
|
The Cooling Time set at 4.99932 year
|
|
...OK!
|
|
FabricationPlant Definition...
|
|
!!INFO!! !!!FabricationPlant!!! A FabricationPlant has been define :
|
|
Chronological Stock Priority has been set!
|
|
Fabrication time set to 1.99863 year
|
|
|
|
...OK!
|
|
Reactor Definition...
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12.9993 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2947.5 MW (with Full Power 3.93e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 108.09 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 13.9986 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2947.5 MW (with Full Power 3.93e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 108.09 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Effective Thermal Power is 614.25 MW (with Full Power 8.19e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.612 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.13963 year
|
|
The Effective Thermal Power is 1433.25 MW (with Full Power 1.911e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.428 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Effective Thermal Power is 614.25 MW (with Full Power 8.19e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.612 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Cycle Time set at 4.13963 year
|
|
The Effective Thermal Power is 1433.25 MW (with Full Power 1.911e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.428 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Cycle Time set at 4.03285 year
|
|
The Effective Thermal Power is 2047.5 MW (with Full Power 2.73e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 71.84 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Cycle Time set at 4.03285 year
|
|
The Effective Thermal Power is 2047.5 MW (with Full Power 2.73e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 71.84 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4 year
|
|
The Cycle Time set at 3.92334 year
|
|
The Effective Thermal Power is 2047.5 MW (with Full Power 2.73e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 69.87 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4 year
|
|
The Cycle Time set at 3.92334 year
|
|
The Effective Thermal Power is 2047.5 MW (with Full Power 2.73e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 69.87 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4 year
|
|
The Cycle Time set at 3.92882 year
|
|
The Effective Thermal Power is 1980 MW (with Full Power 2.64e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 67.65 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Cycle Time set at 3.92882 year
|
|
The Effective Thermal Power is 1980 MW (with Full Power 2.64e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 67.65 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12 year
|
|
The Cycle Time set at 4.31759 year
|
|
The Effective Thermal Power is 2925 MW (with Full Power 3.9e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.34 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12.9993 year
|
|
The Cycle Time set at 4.31759 year
|
|
The Effective Thermal Power is 2925 MW (with Full Power 3.9e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.34 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 16 year
|
|
The Cycle Time set at 4.31759 year
|
|
The Effective Thermal Power is 2925 MW (with Full Power 3.9e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.34 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 16.9993 year
|
|
The Cycle Time set at 4.31759 year
|
|
The Effective Thermal Power is 2925 MW (with Full Power 3.9e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.34 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8.99932 year
|
|
The Effective Thermal Power is 610.875 MW (with Full Power 8.145e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.504 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8.99932 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1425.38 MW (with Full Power 1.9005e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.176 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8.99932 year
|
|
The Effective Thermal Power is 610.875 MW (with Full Power 8.145e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.504 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8.99932 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1425.38 MW (with Full Power 1.9005e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.176 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12 year
|
|
The Effective Thermal Power is 610.875 MW (with Full Power 8.145e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.504 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1425.38 MW (with Full Power 1.9005e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.176 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12.9993 year
|
|
The Effective Thermal Power is 610.875 MW (with Full Power 8.145e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.504 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12.9993 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1425.38 MW (with Full Power 1.9005e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.176 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 24.9993 year
|
|
The Cycle Time set at 3.75086 year
|
|
The Effective Thermal Power is 3375 MW (with Full Power 4.5e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.56 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 24.9993 year
|
|
The Cycle Time set at 3.75086 year
|
|
The Effective Thermal Power is 3375 MW (with Full Power 4.5e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.56 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 26.9979 year
|
|
The Cycle Time set at 3.75086 year
|
|
The Effective Thermal Power is 3363.75 MW (with Full Power 4.485e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.24 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 26.9979 year
|
|
The Cycle Time set at 3.75086 year
|
|
The Effective Thermal Power is 3363.75 MW (with Full Power 4.485e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 107.24 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8.99932 year
|
|
The Cycle Time set at 4.03833 year
|
|
The Effective Thermal Power is 2058.75 MW (with Full Power 2.745e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 72.32 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Cycle Time set at 4.03833 year
|
|
The Effective Thermal Power is 2058.75 MW (with Full Power 2.745e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 72.32 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8.99932 year
|
|
The Cycle Time set at 4.03833 year
|
|
The Effective Thermal Power is 2058.75 MW (with Full Power 2.745e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 72.32 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Cycle Time set at 4.03833 year
|
|
The Effective Thermal Power is 2058.75 MW (with Full Power 2.745e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 72.32 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 600.75 MW (with Full Power 8.01e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.144 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1401.75 MW (with Full Power 1.869e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 49.336 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 600.75 MW (with Full Power 8.01e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.144 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1401.75 MW (with Full Power 1.869e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 49.336 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 600.75 MW (with Full Power 8.01e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.144 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1401.75 MW (with Full Power 1.869e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 49.336 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 600.75 MW (with Full Power 8.01e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.144 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.14237 year
|
|
The Effective Thermal Power is 1401.75 MW (with Full Power 1.869e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 49.336 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 2.99795 year
|
|
The Cycle Time set at 3.92882 year
|
|
The Effective Thermal Power is 1980 MW (with Full Power 2.64e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 67.65 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 2.99795 year
|
|
The Cycle Time set at 3.92882 year
|
|
The Effective Thermal Power is 1980 MW (with Full Power 2.64e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 67.65 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 10.9979 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 16 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2947.5 MW (with Full Power 3.93e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 108.09 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 18.9979 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2947.5 MW (with Full Power 3.93e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 108.09 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Cycle Time set at 4.03285 year
|
|
The Effective Thermal Power is 2047.5 MW (with Full Power 2.73e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 71.84 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 614.25 MW (with Full Power 8.19e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.612 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Cycle Time set at 4.04381 year
|
|
The Effective Thermal Power is 1433.25 MW (with Full Power 1.911e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.428 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Effective Thermal Power is 614.25 MW (with Full Power 8.19e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.612 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.04381 year
|
|
The Effective Thermal Power is 1433.25 MW (with Full Power 1.911e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.428 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Effective Thermal Power is 614.25 MW (with Full Power 8.19e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.612 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.04381 year
|
|
The Effective Thermal Power is 1433.25 MW (with Full Power 1.911e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.428 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Effective Thermal Power is 614.25 MW (with Full Power 8.19e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37029 year
|
|
The Heavy Metal Mass in the Core set at 21.612 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Cycle Time set at 4.04381 year
|
|
The Effective Thermal Power is 1433.25 MW (with Full Power 1.911e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.428 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Cycle Time set at 4.03285 year
|
|
The Effective Thermal Power is 2047.5 MW (with Full Power 2.73e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 71.84 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12.9993 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2947.5 MW (with Full Power 3.93e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 108.09 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 13.9986 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2947.5 MW (with Full Power 3.93e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 108.09 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 9.99863 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 10.9979 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 10.9979 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 14.9979 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 16.9993 year
|
|
The Cycle Time set at 4.31485 year
|
|
The Effective Thermal Power is 2992.5 MW (with Full Power 3.99e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 109.71 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 10.9979 year
|
|
The Cycle Time set at 4.31759 year
|
|
The Effective Thermal Power is 3003.75 MW (with Full Power 4.005e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 110.22 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 12 year
|
|
The Cycle Time set at 4.31759 year
|
|
The Effective Thermal Power is 3003.75 MW (with Full Power 4.005e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 110.22 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Effective Thermal Power is 617.625 MW (with Full Power 8.235e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.756 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Cycle Time set at 4.14511 year
|
|
The Effective Thermal Power is 1441.12 MW (with Full Power 1.9215e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.764 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Effective Thermal Power is 617.625 MW (with Full Power 8.235e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.756 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 8 year
|
|
The Cycle Time set at 4.14511 year
|
|
The Effective Thermal Power is 1441.12 MW (with Full Power 1.9215e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.764 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 617.625 MW (with Full Power 8.235e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.756 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Cycle Time set at 4.14511 year
|
|
The Effective Thermal Power is 1441.12 MW (with Full Power 1.9215e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.764 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Effective Thermal Power is 617.625 MW (with Full Power 8.235e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.756 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 4.99932 year
|
|
The Cycle Time set at 4.14511 year
|
|
The Effective Thermal Power is 1441.12 MW (with Full Power 1.9215e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.764 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Effective Thermal Power is 617.625 MW (with Full Power 8.235e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.756 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.14511 year
|
|
The Effective Thermal Power is 1441.12 MW (with Full Power 1.9215e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.764 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is not fixed !
|
|
Fuel Type set to : MOX
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Effective Thermal Power is 617.625 MW (with Full Power 8.235e+08 and 0.75 Charge Factor)
|
|
Burn-Up at end of Cycle set at 35 GWj/t
|
|
The corresponding Cycle Time is 3.37303 year
|
|
The Heavy Metal Mass in the Core set at 21.756 tons
|
|
|
|
!!INFO!! !!!Reactor!!! A Reactor has been define :
|
|
Fuel Composition is fixed !
|
|
Creation time set at 0 year
|
|
Life time (Operating's Duration) set at 5.99863 year
|
|
The Cycle Time set at 4.14511 year
|
|
The Effective Thermal Power is 1441.12 MW (with Full Power 1.9215e+09 and 0.75 Charge Factor)
|
|
The Heavy Metal Mass in the Core set at 50.764 tons
|
|
|
|
...OK!
|
|
|
|
|
|
Addind Phase :
|
|
-FabricationPlant ...OK!
|
|
-Pool ...OK!
|
|
-Reactor ...OK!
|
|
-Storage ...OK!
|
|
Addind Phase... ...Done!
|
|
|
|
|
|
Beginning the Evolution
|
|
Opening OutPut File ... ...OK!
|
|
Creating Data Tree ... ...OK!
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
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|
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|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
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|
|
Integration time is 0.
|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
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|
|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
|
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|
|
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|
|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
|
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|
|
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|
|
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|
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|
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|
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|
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|
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|
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|
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|
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|
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|
|
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|
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|
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|
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|
|
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|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
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|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
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|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
Integration time is 0.
|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
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|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
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|
|
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|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Integration time is 0.
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|
|
Too many steps in routine RungeKutta
|