新着情報

2022

2024.10.05

 

Papers with reviews (English)

  1. Miura, Y. and K. Yoshimura, Development and validation of a three-dimensional variably saturated flow model for global future water resource assessment – Targeting saturated groundwater flow in plains, JAMES., 14, 10. e2022MS003017, https://doi.org/10.1029/2022MS003017, 2022.
  2. Yin, G., T. Yoshikane, K. Yoshimura, K. Yamamoto, T. Kubota, A support vector machine-based method for improving real-time hourly precipitation forecast in Japan, J. Hydrol., 612, 128125, https://doi.org/10.1016/j.jhydrol.2022.128125, 2022.
  3. Bühler, J.C., J.M. Axelsson, F.A. Lechleitner, J. Fohlmeister, A.N. LeGrande, M. Midhun, J. Sjolte, M. Werner, K. Yoshimura, and K. Rehfeld, Investigating oxygen and carbon isotopic relationships in speleothem records over the last millennium using multiple isotope-enabled climate models, Clim. Past., 18, 1625–1654, https://doi.org/10.5194/cp-18-1625-2022, 2022.
  4. Hatono, M., M. Kiguchi, K. Yoshimura, S. Kanae, K. Kuraji, and T. Oki, A 0.01-degree gridded precipitation dataset for Japan, 1926-2020, Scientific Data., 9, 422, https://doi.org/10.1038/s41597-022-01548-3, 2022.
  5. Li, X., R. Kawamura, A. Sugimoto, K. Yoshimura, Isotopic composition and moisture sources of precipitation in midlatitude regions characterized by extratropical cyclones’ route, J. Hydrology., 612(A), https://doi.org/10.1016/j.jhydrol.2022.128047, 2022.
  6. Satoh, Y., K. Yoshimura, Y. Pokhrel, H. Kim, H. Shiogama, T. Yokohata, N. Hanasaki, Y. Wada, P. Burek, E. Byers, H.M. Schmied, D. Gerten, S. Ostberg, S. N. Gosling, J.E.S. Boulange and T. Oki, The timing of unprecedented hydrological drought under climate change, Nat. Comm. 13, 3287, https://doi.org/10.1038/s41467-022-30729-2, 2022.
  7. Yoshikane, T. and K. Yoshimura, A bias correction method for precipitation through recognizing mesoscale precipitation systems corresponding to weather conditions, PLOS water 1(5), https://doi.org/10.1371/journal.pwat.0000016, 2022.
  8. Shoji, S., A. Okazaki, and K. Yoshimura, Impact of proxies and prior estimates on data assimilation using isotope ratios for the climate reconstruction of the last millennium, Earth and Space Science, e2020EA001618, https://doi.org/10.1029/2020EA001618, 2022.
  9. Onuma, Y., K. Yoshimura, N. Takeuchi, Global simulation of snow algal blooming by coupling a land surface and newly developed snow algae models. Journal of Geophysical Research: Biogeosciences, 127, e2021JG006339, https://doi.org/10.1029/2021JG006339, 2022.
  10. Hanazaki, R., D. Yamazaki, K. Yoshimura, Development of Reservoir Flood Control Scheme for Global Flood Models, JAMES, JAME21549, https://doi.org/10.1029/2021MS002944, 2022.
  11. Yin, G., J, Baik, J. Park, Comprehensive analysis of GEO-KOMPSAT-2A and FengYun satellite-based precipitation estimates across Northeast Asia. GIScience & Remote Sensing, 59(1), 782-800, https://doi.org/10.1080/15481603.2022.2067970, 2022.
  12. Toride, K., G. J. Hakim, What distinguishes MJO events associated with atmospheric rivers?, Journal of Climate, 35(18), 6135-6149, https://doi.org/10.1175/JCLI-D-21-0493.1, 2022.
  13. Onuma, Y., Takeuchi, N., Uetake, J., Niwano, M., Tanaka, S., Nagatsuka, N. and Aoki, T.  Modeling seasonal growth of phototrophs on bare ice on the Qaanaaq Ice Cap, northwestern Greenland, Journal of Glaciology, 1–13, https://doi.org/10.1017/jog.2022.76, 2022.
  14. Dai Yamazaki, Yuki Kita, Kanon Kino, Takumi Bannai, Shuhei Nomura, Ikuto Kanbe, Satoru Shoji, Ryo Kaneko, and Kei Yoshimura. Why Does the World Move Toward Carbon Neutrality? Journal of Japan Society of Hydrology and Water Resources. https://doi.org/10.3178/jjshwr.35.202, 2022.
  15. Krätschmer, S., A. Cauquoin, G. Lohmann and M. Werner, A Modeling Perspective on the Lingering Glacial Sea Surface Temperature Conundrum, Geophys. Res. Lett., 49, e2022GL100378, https://doi.org/10.1029/2022GL100378, 2022.

Papers with reviews (Japanese)

  1. 新田友子,荒川隆,鳩野美佐子,竹島滉,山崎大,芳村圭,統合陸域シミュレータと気候モデルMIROCの連成シミュレーション,計算工学講演会論文集,27,A-12-01,2022
  2. 芳村圭, 倉敷市真備町を例にとった洪水予測研究, 気象研究ノート第246号、154-156, 2022.
  3. 芳村圭, 洪水の実時間予測, 水文・水資源ハンドブック第二版, 219-223, 2022.
  4. 吉川晴矢, 芳村圭, 大気造水による地域気候への影響, 土木学会論文集B1(水工学), I_703-I_708, 2022.
  5. Wang, X., K. Toride, K. Yoshimura, Historical atmospheric analysis by weather category assimilation using Gaussian transformation, Journal of Japan Society of Civil Engineers, Ser. B1(Hydraulic Engineering), 78(2), I_691-I_696, 2022.
  6. Yang, Y. and K. Yoshimura, Isotopic simulation of combustion-derived vapor emission in urban area using regional spectral model, Journal of Japan Society of Civil Engineers, Ser. B1(Hydraulic Engineering), 78(2), I_697-I_702, 2022.
  7. 芳村圭,新田友子,次世代地球システムモデルに向けた統合陸域シミュレータの開発 〜土壌物理プロセスに着目して〜,土壌の物理性,2022.
  8. 山崎大, 北祐樹, 木野佳音, 坂内匠, 野村周平, 神戸育人, 庄司悟, 金子凌, 芳村圭, 世界はなぜ脱炭素に向けて舵を切ったのか?, 水文・水資源学会誌, 35, 202-232, 2022.
東京大学
東京大学生産技術研究所
東京大学社会基盤学科
東京大学⼤気海洋研究所
東京大学 Global Hydrology Group
Today's Earth (TE) - JAXA
自然環境学専攻 - 東京大学

国立大学法人 東京大学 生産技術研究所
大規模実験高度解析推進基盤

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