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Feasibility of neutron coincidence counting for spent TRISO fuel
Ming Fang,
Angela Di Fulvio
Nuclear, Plasma, and Radiological Engineering
Illinois Global Institute
National Center for Supercomputing Applications (NCSA)
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Keyphrases
235U
100%
Pebbles
100%
Neutron Counter
100%
Neutron multiplicity Counting
100%
Relative Uncertainty
50%
High Efficiency
50%
Neutron
50%
Exposure Rate
50%
Fuel Consumption
50%
Source Strength
50%
Counter-based
50%
Straw
50%
High-temperature Reactor
50%
Gamma Rays
50%
Pebble Bed Reactor
50%
Intrinsic Efficiency
50%
Neutronics
50%
Gamma-ray Sources
50%
Fuel Characterization
50%
Burnup
50%
Used Fuel
50%
Neutron Detection Efficiency
50%
Low gamma
50%
Fission Product Retention
50%
Straw Detector
50%
Boron Coated Straws
50%
Engineering
Gamma Ray
100%
Multiplicity
66%
Source Strength
33%
Burnup
33%
Neutronics
33%
Pebble Bed Reactor
33%
Fission Product
33%
High Temperature Gas Reactors
33%
Ray Source
33%
Physics
Gamma Radiation
100%
High Temperature Gas
50%
Gamma-Ray Sources
50%
Neutronics
50%
Pebble Bed Reactor
50%