1. Adams, B.M., Bohnhoff, W.J., Dalbey, K.R., Ebeida, M.S., Eddy, J.P., Eldred, M.S., Hooper, R.W., Hough, P.D., Hu, K.T., Jakeman, J.D., Khalil, M., Maupin, K.A., Monschke, J.A., Ridgway, E.M., Rushdi, A.A., Seidl, D.T., Stephens, J.A., Swiler, L.P., Tran, A., and Winokur, J.G., Dakota, a multilevel parallel object-oriented framework for design optimization, parameter estimation, uncertainty quantification, and sensitivity analysis: Version 6.16 Developers manual, Sandia National Laboratories, (2022), (online), available from < https://dakota.sandia.gov/content/manuals >, (accessed on 27 November, 2023).
2. Doda, N., Nakamine, Y., Igawa, K., Iwasaki, T., Murakami, S., and Tanaka, M., Development of a design optimization framework for sodium-cooled fast reactors - development of coupled analysis control function -, Proceedings of the 27th Conference on Computational Engineering and Science, Vol. 27 (2022), Paper No. A-10-02. (in Japanese)
3. Ezure, T., Onojima, T., Tanaka, M., Kobayashi, J., Kurihara, A., and Kameyama, Y., Study on multi-dimensional core cooling behavior of sodium-cooled fast reactors under DRACS operating conditions, Proceedings of 18th International Topical Meeting on Nuclear Reactor Thermal Hydraulics (NURETH-18) (2019), pp.3355–3363.
4. Fast Reactor Development Strategy Working Group, Strategic roadmap, Ministry of Economy, Trade, and Industry (2018) (in Japanese), (online), available from < https://www.cas.go.jp/jp/seisaku/genshiryoku_kakuryo_kaigi/pdf/h301220_siryou.pdf >, (accessed on 27 November, 2023).
5. Hamase, E., Kuwagaki, K., Doda, N., Yokoyama, K., and Tanaka M., Development of optimization process for core design by Bayesian optimization - investigation of applicability and effectiveness for optimization process with integrated analysis between neutronics and plant dynamics -, Proceedings of the 30th International Conference on Nuclear Engineering (ICONE30) (2023), Paper No. ICONE30-1153.