Validation of the analytical methods in the LWR code BOXER for gadolinium-loaded fuel pins
Conference
·
· Transactions of the American Nuclear Society; (United States)
OSTI ID:6782544
Due to the very high absorption occurring in gadolinium-loaded fuel pins, calculations of lattices with such pins present are a demanding test of the analysis methods in light water reactor (LWR) cell and assembly codes. Considerable effort has, therefore, been devoted to the validation of code methods for gadolinia fuel. The goal of the work reported in this paper is to check the analysis methods in the LWR cell/assembly code BOXER and its associated cross-section processing code ETOBOX, by comparison of BOXER results with those from a very accurate Monte Carlo calculation for a gadolinium benchmark problem. Initial results of such a comparison have been previously reported. However, the Monte Carlo calculations, done with the MCNP code, were performed at Los Alamos National Laboratory using ENDF/B-V data, while the BOXER calculations were performed at the Paul Scherrer Institute using JEF-1 nuclear data. This difference in the basic nuclear data used for the two calculations, caused by the restricted nature of these evaluated data files, led to associated uncertainties in a comparison of the results for methods validation. In the joint investigations at the Georgia Institute of Technology and PSI, such uncertainty in this comparison was eliminated by using ENDF/B-V data for BOXER calculations at Georgia Tech.
- OSTI ID:
- 6782544
- Report Number(s):
- CONF-901101--
- Conference Information:
- Journal Name: Transactions of the American Nuclear Society; (United States) Journal Volume: 62
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
21 SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS
210100* -- Power Reactors
Nonbreeding
Light-Water Moderated
Boiling Water Cooled
210200 -- Power Reactors
Nonbreeding
Light-Water Moderated
Nonboiling Water Cooled
ABSORPTION
B CODES
BENCHMARKS
BOUNDARY CONDITIONS
BWR TYPE REACTORS
CALCULATION METHODS
CHALCOGENIDES
COMPUTER CODES
E CODES
ENRICHED URANIUM REACTORS
FUEL ASSEMBLIES
FUEL CANS
FUEL ELEMENTS
FUEL PINS
GADOLINIUM COMPOUNDS
GADOLINIUM OXIDES
LANL
MESH GENERATION
MONTE CARLO METHOD
MULTIPLICATION FACTORS
NATIONAL ORGANIZATIONS
NEUTRON FLUX
NUCLEAR DATA COLLECTIONS
OXIDES
OXYGEN COMPOUNDS
PHYSICS
POWER REACTORS
PROBABILITY
PWR TYPE REACTORS
RADIATION FLUX
RARE EARTH COMPOUNDS
REACTOR COMPONENTS
REACTOR LATTICES
REACTOR PHYSICS
REACTORS
SORPTION
TESTING
THERMAL REACTORS
TWO-DIMENSIONAL CALCULATIONS
US DOE
US ORGANIZATIONS
VALIDATION
WATER COOLED REACTORS
WATER MODERATED REACTORS
210100* -- Power Reactors
Nonbreeding
Light-Water Moderated
Boiling Water Cooled
210200 -- Power Reactors
Nonbreeding
Light-Water Moderated
Nonboiling Water Cooled
ABSORPTION
B CODES
BENCHMARKS
BOUNDARY CONDITIONS
BWR TYPE REACTORS
CALCULATION METHODS
CHALCOGENIDES
COMPUTER CODES
E CODES
ENRICHED URANIUM REACTORS
FUEL ASSEMBLIES
FUEL CANS
FUEL ELEMENTS
FUEL PINS
GADOLINIUM COMPOUNDS
GADOLINIUM OXIDES
LANL
MESH GENERATION
MONTE CARLO METHOD
MULTIPLICATION FACTORS
NATIONAL ORGANIZATIONS
NEUTRON FLUX
NUCLEAR DATA COLLECTIONS
OXIDES
OXYGEN COMPOUNDS
PHYSICS
POWER REACTORS
PROBABILITY
PWR TYPE REACTORS
RADIATION FLUX
RARE EARTH COMPOUNDS
REACTOR COMPONENTS
REACTOR LATTICES
REACTOR PHYSICS
REACTORS
SORPTION
TESTING
THERMAL REACTORS
TWO-DIMENSIONAL CALCULATIONS
US DOE
US ORGANIZATIONS
VALIDATION
WATER COOLED REACTORS
WATER MODERATED REACTORS