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2. 2) Yasuda, S.: Liquefaction-induced Damage in Kanto District during the 2011 Great East Japan Earthquake, Japanese Geotechnical Journal, Vol. 61, No. 5, No. 664, pp. 12-15, 2013 (in Japanese) 安田進:東日本大震災による関東地域の液状化被害, 地盤工学会誌, Vol.61, No. 5, No. 664, pp. 12-15, 2013
3. 3) Hatanaka, Y., Nakamura, S., Suzuki, T.: Analytical study on estimation of FLIP input parameters to reproduce liquefaction strength curve, the 56th Annual Meeting of the Japan National Conference on Geotechnical Engineering, pp.12-9-2-07, 2021 (in Japanese) 畑中佑太, 中村壮志, 鈴木琢也:モーダル反復誤差修正法による液状化強度曲線を再現するFLIP パラメータの推定, 第56 回地盤工学研究発表会, 12-9-2-07, 2021
4. 4) Nakamura, S., Hatanaka, Y., Suzuki, T.: Estimation of FLIP Parameter to Reproduce Liquefaction Strength Curve Obtained from Laboratory Tests, Japanese Geotechnical Journal, Vol. 16, No. 4, pp. 371-381, 2021 (in Japanese) 中村壮志, 畑中佑太, 鈴木琢也:室内試験等から得られた液状化強度曲線を再現するFLIP 用入力パラメータの推定, 地盤工学ジャーナル, Vol.16 No. 4, pp. 371-381, 2021, (DOI: https://doi.org/10.3208/jgs.16.371 )
5. 5) Morita, T., Iai, S., Liu, H., Ichii, K., Sato, Y.: Simplified Method to Determine Parameter of FLIP, Technical note of the port and harbour research institute ministry of transport, No. 869, 1997 (in Japanese) 森田年一, 井合進, Hanlong Liu, 一井康二, 佐藤幸博:液状化による構造物被害予測プログラムFLIP において必要な各種パラメタの簡易設定法, 港湾技研資料, No. 869, 1997