INIS
ants
82%
solutions
61%
physics
46%
reactors
45%
power
44%
data
35%
simulation
33%
levels
31%
district heating
30%
benchmarks
29%
chains
29%
monte carlo method
29%
applications
28%
power distribution
27%
fuels
26%
design
24%
comparative evaluations
23%
geometry
20%
finland
20%
energy
20%
validation
19%
boron
18%
group constants
17%
wwer type reactors
16%
control rod worths
15%
small modular reactors
13%
coolants
13%
fuel cycle
13%
time dependence
13%
temperature coefficient
13%
pwr type reactors
12%
reactor cores
12%
accuracy
12%
control rods
11%
margins
10%
Keyphrases
Serpent
66%
Neutronics
45%
Kraken
43%
Computational Framework
33%
Reactor
31%
District Heating Reactor
29%
Finland
29%
BEAVRS
26%
Technical Research
22%
FINIX
20%
Fuel Behavior
20%
District Heating
20%
Group Constants
17%
Order Reduction
16%
Zero Power Physics Test
15%
Reactor Core
14%
Power Data
13%
Zero-power
13%
Fuel Consumption Model
13%
Neutronic Design
13%
Pin Power Reconstruction
13%
Full Core
13%
Design Cycle
13%
Small Modular Reactor
13%
Natural Circulation
13%
Heating Applications
13%
Neutronics Modeling
13%
Hexagonal Geometry
13%
Heating Plant
13%
Burnable Absorber
13%
VVER-1000
13%
Energy Group
13%
Ongoing Development
13%
Coding System
13%
Coolant
13%
Initial Core
13%
Core Physics
13%
Trace Codes
13%
Leakage Correction
13%
Core Level
13%
Physics Applications
13%
Multiphysics
13%
Power Distribution
12%
Fuel Rod
11%
Nuclear Power Plant
11%
Engineering
Neutronics
100%
Power Distribution
51%
Control Rod
44%
District Heating
40%
Technical Research Centre
31%
Temperature Coefficient
22%
Design Task
20%
Reference Solution
20%
Reactor Core
17%
Thermal Hydraulics
17%
Safety Analysis
16%
Small Modular Reactor
13%
Fuel Cycle
13%
Design Cycle
13%
Reactor Level
13%
Progression
13%
Relative Difference
13%
Root Mean Square
13%
Burnup
13%
Full Scale
13%
Power Reactor
13%
Measured Data
13%
Good Agreement
13%
Measurement Error
13%
Steam Piping Systems
13%
Measurement Data
13%
Core Level
13%
Fuel Rod
13%
Isothermal
11%
Experimental Measurement
11%
Boron Concentration
11%