AbstractNuclear criticality safety analyses (NCSAs) considering burnup credit were performed for the GBC-32 cask. The used nuclear fuel assemblies (UNFAs) discharged from Hanbit Nuclear Power Plant Unit 3 Cycle 6 were loaded into the cask. Their axial burnup distributions and average discharge burnups were evaluated using the DeCART and Multi-purpose Analyzer for Static and Transient Effects of Reactors (MASTER) codes, and NCSAs were performed using SCALE 6.1/STandardized Analysis of Reactivity for Burnup Credit using SCALE (STARBUCS) and Monte Carlo N-Particle transport code, version 6 (MCNP 6). The axial burnup distributions were determined for 20 UNFAs with various initial enrichments and burnups, which were applied to the criticality an...
When representing the behavior of commercial spent nuclear fuel (SNF), credit is sought for the redu...
NTIS Invoice: 21913;NTIS Order #:DE2001788691;PDFProceedingshttp://ntl.bts.gov/lib/14000/14900/14937...
Waste packages are loaded with commercial spent nuclear fuel (SNF) that satisfies the minimum burnup...
AbstractNuclear criticality safety analyses (NCSAs) considering burnup credit were performed for the...
Nuclear criticality safety analyses (NCSAs) considering burnup credit were performed for the GBC-32 ...
This paper presents the validation of the MCS code for critical safety analysis with burnup credit f...
We present a summary of the actinide-plus-fission-product burnup credit criticality safety licensing...
This study performed criticality analysis for the GBC-68 storage cask loaded with boiling water reac...
In this study, the analysis of a dry storage cask for accident-tolerant and high-burnup spent fuel w...
The objective of this study is to conduct a sensitivity analysis on multiple fuel assembly misloadin...
In 1999 the U.S. Nuclear Regulatory Commission (U.S. NRC) initiated a research program to support th...
Spent fuel transportation and storage cask designs based on a burnup credit approach must consider i...
This paper describes how taking credit for burnup of actinides in the spent nuclear fuel (SNF) of RB...
Burnup credit methodology is economically advantageous because significantly higher loading capacity...
A methodology for performing and applying nuclear criticality safety calculations, for PWR spent nuc...
When representing the behavior of commercial spent nuclear fuel (SNF), credit is sought for the redu...
NTIS Invoice: 21913;NTIS Order #:DE2001788691;PDFProceedingshttp://ntl.bts.gov/lib/14000/14900/14937...
Waste packages are loaded with commercial spent nuclear fuel (SNF) that satisfies the minimum burnup...
AbstractNuclear criticality safety analyses (NCSAs) considering burnup credit were performed for the...
Nuclear criticality safety analyses (NCSAs) considering burnup credit were performed for the GBC-32 ...
This paper presents the validation of the MCS code for critical safety analysis with burnup credit f...
We present a summary of the actinide-plus-fission-product burnup credit criticality safety licensing...
This study performed criticality analysis for the GBC-68 storage cask loaded with boiling water reac...
In this study, the analysis of a dry storage cask for accident-tolerant and high-burnup spent fuel w...
The objective of this study is to conduct a sensitivity analysis on multiple fuel assembly misloadin...
In 1999 the U.S. Nuclear Regulatory Commission (U.S. NRC) initiated a research program to support th...
Spent fuel transportation and storage cask designs based on a burnup credit approach must consider i...
This paper describes how taking credit for burnup of actinides in the spent nuclear fuel (SNF) of RB...
Burnup credit methodology is economically advantageous because significantly higher loading capacity...
A methodology for performing and applying nuclear criticality safety calculations, for PWR spent nuc...
When representing the behavior of commercial spent nuclear fuel (SNF), credit is sought for the redu...
NTIS Invoice: 21913;NTIS Order #:DE2001788691;PDFProceedingshttp://ntl.bts.gov/lib/14000/14900/14937...
Waste packages are loaded with commercial spent nuclear fuel (SNF) that satisfies the minimum burnup...