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Improvement and verification of the DeCART code for HTGR core physics analysis

Authors :
Hyun Chul Lee
Tae Young Han
Jin Young Cho
Ho Jin Park
Ser Gi Hong
Source :
Nuclear Engineering and Technology, Vol 51, Iss 1, Pp 13-30 (2019)
Publication Year :
2019
Publisher :
Elsevier, 2019.

Abstract

This paper presents the recent improvements in the DeCART code for HTGR analysis. A new 190-group DeCART cross-section library based on ENDF/B-VII.0 was generated using the KAERI library processing system for HTGR. Two methods for the eigen-mode adjoint flux calculation were implemented. An azimuthal angle discretization method based on the Gaussian quadrature was implemented to reduce the error from the azimuthal angle discretization. A two-level parallelization using MPI and OpenMP was adopted for massive parallel computations. A quadratic depletion solver was implemented to reduce the error involved in the Gd depletion. A module to generate equivalent group constants was implemented for the nodal codes. The capabilities of the DeCART code were improved for geometry handling including an approximate treatment of a cylindrical outer boundary, an explicit border model, the R-G-B checker-board model, and a super-cell model for a hexagonal geometry. The newly improved and implemented functionalities were verified against various numerical benchmarks such as OECD/MHTGR-350 benchmark phase III problems, two-dimensional high temperature gas cooled reactor benchmark problems derived from the MHTGR-350 reference design, and numerical benchmark problems based on the compact nuclear power source experiment by comparing the DeCART solutions with the Monte-Carlo reference solutions obtained using the McCARD code. Keywords: DeCART, HTGR, Adjoint solver, Two-level parallelization, Numerical benchmark

Details

Language :
English
ISSN :
17385733
Volume :
51
Issue :
1
Database :
OpenAIRE
Journal :
Nuclear Engineering and Technology
Accession number :
edsair.doi.dedup.....63005b4b5291bfe9be58ece3bc5564ce