1. 1) ダム工学会・ダム貯水池課題研究部会 ダム大規模洪水対応WG(座長:角哲也):大規模洪水時におけるダム効果の情報発信(令和5年3月),http://www.jsde.jp/daikibokouzuiteigen.pdf, [JSDE WG, Information dissemination of the dam effect at large scale flooding] (2023年5月24日アクセス)
2. 2) 国土交通省:川辺川ダムが存在した場合の効果の推定について.例えば http://www.qsr.mlit.go.jp/yatusiro/site_files/file/bousai/gouukensho/sankousryou/sankousiryou-kawabe.pdf http://www.qsr.mlit.go.jp/yatusiro/site_files/file/bousai/gouukensho/20201006shiryou3.pdf [MLIT, Estimation of the effect of Kawabegwa dam if exists] (2023年5月24日アクセス)
3. 3) Kenichiro Kobayashi, Le Duc, Takuya Kawabata, Atsushi Tamura, Tsutao Oizumi, Kazuo Saito, Daisuke Nohara and Tetsuya Sumi:Ensemble rainfall–runoff and inundation simulations using 100 and 1000 member rainfalls by 4D LETKF on the Kumagawa River flooding 2020, Prog Earth Planet Sci 10, 5, https://doi.org/10.1186/s40645-023-00537-3, 2023
4. 4) 星清・山岡勲:雨水流法と貯留関数法との相互関係,第26回水理講演会論文集,pp. 273-278, 1982. https://doi.org/10.2208/prohe1975.26.273 [Hoshi, K. and Yamaoka, I, A relationship between Kinematic wave and Storage Routing Model, Proceedings of the Japanese Conference on Hydraulics, Vol. 26, pp. 273-278, 1982]
5. 5) Duc L., T. Kawabata, K. Saito, and T. Oizumi:Forecasts of the July 2020 Kyushu Heavy Rain Using a 1000-Member Ensemble Kalman Filter, SOLA, 17, 41-47, 2021, https://doi.org/10.2151/sola.2021-007