12
C. H. Pyeon
74. Endo T, Watanabe K, Chiba G et al (2020) Nuclear data-induced uncertainty quantification of
prompt neutron decay constant based on perturbation theory for ADS experiments at KUCA.
J Nucl Sci Technol 57:196
75. Yamanaka M, Pyeon CH, Endo T et al (2020) Experimental analyses of β eff / in acceleratordriven system at Kyoto University Critical Assembly. J Nucl Sci Technol 57:205
76. Yamanaka M, Watanabe K, Pyeon CH (2020) Subcriticality estimation by extended Kalman
filter technique in transient experiment with external neutron source at Kyoto University Critical
Assembly. Eur Phys J Plus 135:256
77. Pyeon CH, Yamanaka M, Lee B (2020) Reaction rate analyses of high-energy neutrons by
injection of 100 MeV protons onto lead-bismuth target. Ann Nucl Energy 144:107498
78. Pyeon CH, Yamanaka M, Endo T et al (2020) Neutron generation time in highly-enriched
uranium core at Kyoto University Critical Assembly. Nucl Sci Eng. https://doi.org/10.1080/
00295639.2020.1774230
79. Shiroya S, Unesaki H, Kawase Y et al (2000) Accelerator driven subcritical system as a
future neutron source in Kyoto University Research Reactor Institute (KURRI)—basic study
on neutron multiplication in the accelerator driven subcritical reactor. Prog Nucl Energy 37:357
80. Shiroya S, Yamamoto A, Shin K et al (2002) Basic study on accelerator driven subcritical
reactor in Kyoto University Research Reactor Institute (KURRI). Prog Nucl Energy 40:489
81. Pyeon CH (2012) Experimental benchmarks for accelerator-driven system (ADS) at Kyoto
University Critical Assembly. KURRI-TR-444
82. Pyeon CH (2015) Experimental benchmarks on thorium-loaded accelerator-driven system
(ADS) at Kyoto University Critical Assembly. KURRI-TR(CD)-48
83. Pyeon CH (2017) Experimental benchmarks of neutronics on solid Pb-Bi in accelerator-driven
system with 100 MeV protons at Kyoto University Critical Assembly. KURRI-TR-447
84. Pyeon CH, Yamanaka M (2018) Experimental benchmarks of neutron characteristics on
uranium-lead zoned core in accelerator-driven system at Kyoto University Critical Assembly.
KURNS-EKR-001
85. Pyeon CH (2020) Experimental benchmarks of medium-fast spectrum core (EE1 core) in
accelerator-driven system at Kyoto University Critical Assembly. KURNS-EKR-007
Open Access This chapter is licensed under the terms of the Creative Commons Attribution 4.0
International License (http://creativecommons.org/licenses/by/4.0/), which permits use, sharing,
adaptation, distribution and reproduction in any medium or format, as long as you give appropriate
credit to the original author(s) and the source, provide a link to the Creative Commons license and
indicate if changes were made.
The images or other third party material in this chapter are included in the chapter’s Creative
Commons license, unless indicated otherwise in a credit line to the material. If material is not
included in the chapter’s Creative Commons license and your intended use is not permitted by
statutory regulation or exceeds the permitted use, you will need to obtain permission directly from
the copyright holder.
C. H. Pyeon
74. Endo T, Watanabe K, Chiba G et al (2020) Nuclear data-induced uncertainty quantification of
prompt neutron decay constant based on perturbation theory for ADS experiments at KUCA.
J Nucl Sci Technol 57:196
75. Yamanaka M, Pyeon CH, Endo T et al (2020) Experimental analyses of β eff / in acceleratordriven system at Kyoto University Critical Assembly. J Nucl Sci Technol 57:205
76. Yamanaka M, Watanabe K, Pyeon CH (2020) Subcriticality estimation by extended Kalman
filter technique in transient experiment with external neutron source at Kyoto University Critical
Assembly. Eur Phys J Plus 135:256
77. Pyeon CH, Yamanaka M, Lee B (2020) Reaction rate analyses of high-energy neutrons by
injection of 100 MeV protons onto lead-bismuth target. Ann Nucl Energy 144:107498
78. Pyeon CH, Yamanaka M, Endo T et al (2020) Neutron generation time in highly-enriched
uranium core at Kyoto University Critical Assembly. Nucl Sci Eng. https://doi.org/10.1080/
00295639.2020.1774230
79. Shiroya S, Unesaki H, Kawase Y et al (2000) Accelerator driven subcritical system as a
future neutron source in Kyoto University Research Reactor Institute (KURRI)—basic study
on neutron multiplication in the accelerator driven subcritical reactor. Prog Nucl Energy 37:357
80. Shiroya S, Yamamoto A, Shin K et al (2002) Basic study on accelerator driven subcritical
reactor in Kyoto University Research Reactor Institute (KURRI). Prog Nucl Energy 40:489
81. Pyeon CH (2012) Experimental benchmarks for accelerator-driven system (ADS) at Kyoto
University Critical Assembly. KURRI-TR-444
82. Pyeon CH (2015) Experimental benchmarks on thorium-loaded accelerator-driven system
(ADS) at Kyoto University Critical Assembly. KURRI-TR(CD)-48
83. Pyeon CH (2017) Experimental benchmarks of neutronics on solid Pb-Bi in accelerator-driven
system with 100 MeV protons at Kyoto University Critical Assembly. KURRI-TR-447
84. Pyeon CH, Yamanaka M (2018) Experimental benchmarks of neutron characteristics on
uranium-lead zoned core in accelerator-driven system at Kyoto University Critical Assembly.
KURNS-EKR-001
85. Pyeon CH (2020) Experimental benchmarks of medium-fast spectrum core (EE1 core) in
accelerator-driven system at Kyoto University Critical Assembly. KURNS-EKR-007
Open Access This chapter is licensed under the terms of the Creative Commons Attribution 4.0
International License (http://creativecommons.org/licenses/by/4.0/), which permits use, sharing,
adaptation, distribution and reproduction in any medium or format, as long as you give appropriate
credit to the original author(s) and the source, provide a link to the Creative Commons license and
indicate if changes were made.
The images or other third party material in this chapter are included in the chapter’s Creative
Commons license, unless indicated otherwise in a credit line to the material. If material is not
included in the chapter’s Creative Commons license and your intended use is not permitted by
statutory regulation or exceeds the permitted use, you will need to obtain permission directly from
the copyright holder.
