@article{CTT100840067, author = {Takeshi Aoki and Sunil Chirayath and Hiroshi Sagara}, title = {Proliferation resistance evaluation of an HTGR transuranic fuel cycle using PRAETOR code}, journal = {Annals of Nuclear Energy}, year = 2020, } @article{CTT100784888, author = {Takeshi AOKI and Hiroshi SAGARA and Chi Young HAN}, title = {Material Attractiveness Evaluation of Inert Matrix Fuel for Nuclear Security and Non-proliferation}, journal = {Annals of Nuclear Energy}, year = 2019, } @article{CTT100787110, author = {Takeshi AOKI and Hiroshi SAGARA and Chi Young HAN}, title = {Impacts of 240Pu Self-Shielding Effect and Uncertainties of σ(n,γ) at Resonance Energy on the Reactivity Controllability in HTGR Inert Matrix Fuel}, journal = {Progress in Nuclear Science and Technology}, year = 2018, } @article{CTT100784877, author = {Takeshi Aoki and Hiroshi Sagara and Chi Young Han}, title = {Feasibility study on TRISO fuel particle for the efficient Pu incineration and 3S features enhancement in HTGR}, journal = {Progress in Nuclear Science and Technology}, year = 2018, } @inproceedings{CTT100784893, author = {青木 健 and 相樂 洋 and Sunil S. Chirayath}, title = {多重被覆粒子燃料を用いたPuの効率的燃焼方法と3S特性の研究(3)Pu量検認技術への要求測定精度}, booktitle = {}, year = 2017, } @inproceedings{CTT100751894, author = {青木 健 and 相樂 洋 and Chirayath S. Sunil}, title = {高温ガス炉を用いる超ウラン燃料サイクルにおけるPu量検認技術への要求精度}, booktitle = {原子力学会2017年春の年会予稿集, CD}, year = 2017, } @inproceedings{CTT100751877, author = {Takeshi Aoki and Sunil S. Chirayath and Hiroshi Sagara}, title = {Material Balance Area Design for the Transuranic Fuel Cycle Employing High Temperature Gas Cooled Reactors}, booktitle = {Trans. Ame. Nucl. Soc}, year = 2016, } @inproceedings{CTT100751866, author = {Takeshi Aoki and Hiroshi Sagara and Chi Young Han}, title = {Feasibility study on TRISO fuel particles for efficient Pu incineration and 3S features enhancement in HTGR}, booktitle = {}, year = 2016, } @inproceedings{CTT100784891, author = {Takeshi Aoki and Hiroshi Sagara and Sunil S. Chirayath}, title = {Proliferation Resistance Evaluation of an Advanced Fuel Cycle Employing High Temperature Gas Cooled Reactors}, booktitle = {}, year = 2016, } @misc{CTT100760174, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, year = 2018, } @misc{CTT100759871, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, year = 2018, } @misc{CTT100759870, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, year = 2018, } @misc{CTT100800609, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, year = 2018, } @phdthesis{CTT100760174, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, school = {東京工業大学}, year = 2018, } @phdthesis{CTT100759871, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, school = {東京工業大学}, year = 2018, } @phdthesis{CTT100759870, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, school = {東京工業大学}, year = 2018, } @phdthesis{CTT100800609, author = {青木健}, title = {効率的なPu燃焼特性を有する高温ガス炉システムの3S特性とシナジー効果}, school = {東京工業大学}, year = 2018, }