References
- B. Inanov, E. Muller, M. Ouisloumen, K. Ivanov, Embedded lattice transport calculation based on PARAGON-NEM code system for reactor core analysis, in: Int. Conf. On the Physics of Reactors, PHYSOR 2008, 2008. Interlaken, Switzerland.
- S. Zhang, C. Tang, H. Huang, Y.A. Chao, "Feasibility of embedding nodal homogenization in next generation methods for 3D pin-by-pin core siumlation, in: Int. Conf. On the Physics of Reactors, PHYSOR 2008, 2008. Interlaken, Switzerland.
- M.A. Smith, E.E. Lewis, B.-C. Na, Benchmark on Deterministic Transport Calculations without Spatial Homogenization: a 2-D/3-D MOX Fuel Assembly 3-D Benchmark, Organization for Economic Co-operation and development, Nuclear Energy Agency, 2003.
- J.E. Hoogenboom, W.R. Martin, B. Petrovic, Monte Carlo Performance Benchmark for Detailed Power Density Calculation in a Full Size Reactor Core. Benchmark Specification Revision 1.2, July, 2011. http://www.nea.fr/dbprog/MonteCarloPerformnaceBenchmakr.htm.
- N.Z. Cho, et al., Overlapping local/global iteration framework for whole-core transport solution, Nucl. Sci. Eng. 175 (2013), 227. https://doi.org/10.13182/NSE12-68
- B.M. Kochunas, A Hybrid Parallel Algorithm for the 3-D Method of Characteristic Solution Fo the Boltzmann Tranpsort Equation on High Performance Computer Clusters" (Ph.D. Thesis), University of Michigan, 2013.
- B. Cho, Nonoverlapping Local/Global Iterative Method for Three-Dimensional Time-Dependent Nuetron Transport Calculations" (Ph.D. Thesis), Korea Advanced Instititue of Science and Technology, 2016.
- A. Yamamoto, K. Tada, Y. Kitamia, Y. Yamane, Performance of the Diffusion and Simplified PN Theories for BWR Pin-by-Pin Fine Mesh Core Analysis, 2007. M&C+SNA 2007, California, USA.
- H.C. Shin, Y. Kim, A nonlinear combination of CMFD (Coarse-mesh Finite Difference) and FMFD (Fine-Mesh Finite Difference) methods, in: Proceedings of Korean Nuclear Society Spring Meeting, Pohang, Korea, May, 1999.
- D.J. Lee, Thmoas J. Downar, Y. Kim, A nodal and finite difference hybrid method for pin-by-pin heterogeneous three-dimensional light water reactor diffusion calculations, Nucl. Sci. Eng. 146 (2004) 319-339. https://doi.org/10.13182/NSE04-A2412
- S.H. Song, H.Y. Yu, Y. Kim, Pin-by-Pin reactor core analysis based on a NEMbased two-level hybrid CMFD algorithm, in: ANS Reactor Physics Topical Meeting, May, 2016. Sunvalley, USA.
- S.H. Song, "Pin-by-Pin Core Calculation with NEM-based Two-level CMFD Algorithm" (MS Thesis), KAIST, 2016.
- T. Downar, et al., PARCS v2.6 U.S NRC Core Neutronics Simulator: Theory Manual, Purdue University, USA, 2004.
- Brian Christensen, Three-dimensional Static and Dynamic Reactor Calculations by the Nodal Expansion Method, Riso National Laboratory, DK-4000 Roskilde, Denmark, May, 1985.
- OpenMP API, OpenMP Applicaion Program Interface, July, 2013. Version 4.0, http://www.openmp.org/mp-documents/OpenMP4.0.0.pdf.
- R. Magnus, Hestenes, Eduard Stiefel, Methods of conjugate gradients for solving linear systems, J. Res. Natl. Bur. Stand. 49 (6) (Dec, 1952).
- Wolfram Research, Inc., Mathematica, 2016. Version 11.0, Champaign, IL.
- H.S. Khalil, The Application of Nodal Methods to PWR Analysis (Ph.D. Thesis), Department of Nuclear Engineering, Massachusetts Institute of Technology, Cambridge, MA, 1983.
- B. Cho, N.Z. Cho, Y. Kim, Theory Manual for the Rectangular Threedimensional Diffusion Nodal Code COREDAX-2 Version 1.5, 2015. KINS/HR-1356 Rev.1, NURAPT-2015-02, KAIST/KINS.
- B. Cho, N.Z. Cho, Y. Kim, User's Manual for the Rectangular Three-dimensional Diffusion Nodal Code COREDAX-2 Version 1.5, 2015. KINS/HR-1355 Rev.1, NURAPT-2015-01, KAIST/KINS.
Cited by
- Pinwise Diffusion Solution of Partially MOX-Loaded PWRs with the GPS (GET PLUS SPH) Method vol.193, pp.11, 2018, https://doi.org/10.1080/00295639.2019.1614367