北海道大学 広域複合災害研究センター(CNHR)

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2020

  1. Yongrae KIM,Takashi YAMADA: Experimental study of physical measures against subsequent sediment flow following debris flow deposition. International Journal of erosion control engineering, Vol 13, No.3, pp.56-63, 2021
  2. Shui Yamaguchi, Mio Kasai: Incorporating ground cracks in the estimation of post-seismic landslide susceptibility, Proceedings of GEOMORPHOMETRY 2020 Conference 166 – 169, 2020
  3. Michiya IRASAWA, Takashi KOI, Ching-Ying TSOU, Nobuaki KATO, Shinjiro MATSUO, Mizuho ARAI, Masahiro KAIBORI, Takashi YAMADA, Mio KASAI, Taeko WAKAHARA, Daisuke HIGAKI, Hajime IKEDA, Yoshiharu ISHIKAWA, Kenichi ARAI, Shinji HIROSE, Tatsuya SATO, Hideki KAWATABATA, Manabu KOUBU, Satoshi NIWA, Kazuhiro SUGAWARA, Hiroyuki MATSUSAKA, Nobuyuki TADA: October 2019 Sediment Disaster in the Tohoku Region owing to Typhoon No. 19 (Tyhpoon Hagibis), International Journal of Erosion Control Engineering 13(2) 48 – 55, 2020
  4. 柳井 一希, 笠井 美青: WOE法及びロジスティック回帰法による和歌山県那智川流域における表層崩壊危険度分布,日本地すべり学会誌 57(3) 90 – 98,2020年
  5. 厚井高志,権田豊:溶岩流による火山災害とその対策の方向性-キラウエア2018年噴火時の溶岩流出実態とその対応を踏まえて-,砂防学会誌 73(6) 27 – 38,2021年
  6. Takashi Koi, Yasuhiro Fujisawa, Nobuo Anyoji. Rainfall-Induced Lahar Occurrences Shortly After Eruptions and Its Initiation Processes in Japan, In: Guzzetti F., Mihalić Arbanas S., Reichenbach P., Sassa K., Bobrowsky P.T., Takara K. (eds) Understanding and Reducing Landslide Disaster Risk. WLF 2020. ICL Contribution to Landslide Disaster Risk Reduction. Springer, Cham. 359 – 364, 2021
  7. 厚井高志, 長井義樹, 菊井稔宏, 小林拓也, 大野宏之, 城ヶ崎正人, 野呂智之, 水野秀明, 田中淳:平成29年7月九州北部豪雨における土砂移動現象の時空間分布の推定と避難実態,砂防学会誌 73(3) 54 – 59,2020年
  8. 梶原伴樹、筒井和男、﨑山朋紀、岸畑明宏、坂口隆紀、木下篤彦、柴田俊、松澤真、田中健貴:コアストーンが分布する斜面の水文特性に関する研究,河川技術論文集,vol.26,pp.573-576,2020年
  9. 海原荘一・浅原 裕・木下篤彦・中谷洋明・田中健貴:高感度地震観測網による大規模土砂移動発生時の地盤振動特性と検知,砂防学会誌,第73巻5号,pp.27-37,2020年
  10. 林幸一郎・小松慎二・窪田安打・木下篤彦・小竹利明・山田拓・柴田俊・田中健貴:重力変形斜面における降雨と岩盤内地下水の水位変動および水質変化の関係,第10回土砂災害に関するシンポジウム,pp.13-18,2020年
  11. 田中健貴・木下篤彦・小竹利明・山田拓・柴田俊・窪田安打・小松慎二・林幸一郎:重力変形斜面における地下水の水質変化に岩盤からの溶出イオンが与える影響,第10回土砂災害に関するシンポジウム,pp.25-30,2020年
  12. 海原荘一・只熊典子・髙田隆行・木下篤彦・柴田俊・小竹利明・山田拓・田中健貴:紀伊半島大水害で発生した深層崩壊斜面下流における蛇行度及び川幅と河床変動の関係,第10回土砂災害に関するシンポジウム,pp.37-42,2020年
  13. 竹本大昭・海原荘一・木下篤彦・田中健貴:超過確率年を用いた土砂災害警戒避難基準雨量の有効性,第10回土砂災害に関するシンポジウム,pp. 169-174,2020年
  14. 松永一慶,桂真也:多数の短期・長期降雨指標を用いた平成28年熊本地震後の土砂移動現象発生時の降雨規模評価,第10回土砂災害に関するシンポジウム論文集,p.7-12,2020年
  15. 桂真也:融雪土砂災害に対する融雪を考慮した土砂災害警戒情報の適用性の検討,第10回土砂災害に関するシンポジウム論文集,p.187-192,2020年
  16. Toshiya Aoki, Shin’ya Katsura, Takahiko Yoshino, Takashi Koi, Yasutaka Tanaka, Takashi Yamada: Pressure Head Dynamics on a Natural Slope in Eastern Iburi Struck by the 2018 Hokkaido Earthquake Understanding and Reducing Landslide Disaster Risk, Vol.5 Catastrophic Landslides and Frontiers of Landslide Science, p.81-86, 2021
  17. 泉典洋,前田健一,岡村未対:簡易なモデルを用いた複層状堤防周辺地盤の浸透流解析,土木学会論文集B1(水工学),Vol.76,No.2,pp.l_325-l_330,2020.11.
  18. 岩佐 隆広, 二階堂 竜司, 平間 史泰, 田所 壮也, 飯島 直己, 西藤 浩二, 吉川 契太郎, 中津 隆文, 熊谷 直哉, 水野 雄三, 山下 俊彦, 木村 克俊, 加藤 史訓, 平井 康幸:高天端人工リーフの水理特性に関する検討,土木学会論文集B2(海岸工学) 76 巻 2 号 p. I_757-I_762,2020年
  19. 今日出人・久加朋子・戸嶋光映・松原寛:低平地・千歳川流域における近郊農業の発展と北海道総合開発計画による河川水位・地下水位・土壌湿潤特性の長期変化に関する研究,水文・水資源学会誌,33, pp.98-110, 2020年
  20. 今日出人・久加朋子・橋場雅弘・土田宏一・西山典志・瀧川憲・杉山拓大・清水康行:電波不感地域における雨量・水位・氾濫情報提供システム開発とハビウ川における検証の試み, 土木学会論文集B1(水工学), 76, pp.I_415-I_420, 2020年
  21. Ayumu Tsuji, Yuji Saito, Landon Kamps, Masashi Wakita, Harunori Nagata: Stabilized combustion of circular fuel duct with liquid oxygen, Proceedings of the Combustion Institute, 2020年7月
  22. Yuji Saito, Landon Kamps, Ayumu Tsuji, Masashi Wakita, Hiroyuki Koizumi, Keisuke Asai, Harunori Nagata: Initial Firing Tests of Aluminum Rod/Water Hybrid Rockets, AIAA Propulsion and Energy 2020 Forum, 1 – 11, 2020年8月
  23. Eduardo Narvaez, Ankit A. Ravankar, Abhijeet Ravankar, Takanori Emaru, Yukinori Kobayashi: Autonomous VTOL-UAV Docking System for Heterogeneous Multi-Robot Team, IEEE Transaction of Instrumentation and Measurement, pp. 1-28 (2020), DOI: 10.1109/TIM.2020.3039649, IF=3.658.
  24. Ankit A. Ravankar, Abhijeet Ravankar, Takanori Emaru, Yukinori Kobayashi: Line Segment Extraction and Polyline Mapping for Mobile Robots in Indoor Structured Environments Using Range Sensors, SICE Journal of Control, Measurement, and System Integration, Vol.13, No.3, pp. 138-147 (2020), DOI: 10.9746/jcmsi.13.138, TC=4.
  25. Hidenori Ogawa, Yukinori Kobayashi, Takanori Emaru: Relative positioning control of flexible structure for precise positioning stage, JSME Mechanical Engineering Journal, Vol.7, No.2 (2020), DOI: 10.1299/mej.19-00443.
  26. Ankit A. Ravankar, Abhijeet Ravankar, Takanori Emaru, Yukinori Kobayashi, HPPRM: Hybrid Potential Based Probabilistic Roadmap Algorithm for Improved Dynamic Path Planning of Mobile Robots, IEEE Access, Vol.8, pp. 221743-221766 (2020), DOI: 10.1109/ACCESS.2020.3043333, IF=3.745.
  27. Subramanian, S. S., Fan, X., Yunus, A.P., van Asch, T., Scaringi, G., Xu, Q., Dai, L., Ishikawa, T., Huang, R. : A sequentially coupled catchment-scale numerical model for snowmelt-induced soil slope instabilities, Journal of Geophysical Research: Earth Surface, 125(5): 1-23, 2020.4. (10.1029/2019JF005468)
  28. Zhu Y., Ishikawa, T., Subramanian, S. S., Luo, B.: Simultaneous analysis of slope instabilities on a small catchment-scale using coupled surface and subsurface flows, Engineering Geology, 275: 105750, 2020.7. (10.1016/j.enggeo.2020.105750)
  29. Nguyen, B.T., Ishikawa, T., Murakami, T.: Effects evaluation of grass age on hydraulic properties of coarse-grained soil, Transportation Geotechnics, 25: 100401, 2020.7.(10.1016/j.trgeo.2020.100401)
  30. Yang, J., Ishikawa, T., Lin, T., Tokoro, T., Nakamura, T., Momoya, Y.: Influence of aging on hydro-mechanical behavior of unsaturated ballast, Transportation Geotechnics, 27: 100480, 2021.1.(10.1016/j.trgeo.2020.100480)
  31. Zhu Y., Ishikawa, T., Subramanian, S. S., Luo, B.: Early warning system for rainfall and snowmelt induced slope failure in seasonally cold regions, Soils and Foundations, 61(1): 198-217, 2021.1. (10.1016/j.sandf.2020.11.009)
  32. Zhu, Y., Ishikawa, T., Subramanian, S. S.: Simulation of runoff and infiltration using iterative cross-coupled surface and subsurface flows, Japanese Geotechnical Society Special Publication (8th Japan-China Geotechnical Symposium), Vol. 8, No. 3, pp.41-46, 2020.9.(10.3208/jgssp.v08.j13)
  33. Nishimura, S., Sasahara, K., Ishikawa, T.: Effect of snow cover evolution on p ore water pressure behaviour in embankments and cut slopes: Field observations, Japanese Geotechnical Society Special Publication (8th Japan-China Geotechnical Symposium), Vol. 8, No. 8, pp. 288-293, 2020.9.(10.3208/jgssp.v08.j07)
  34. Shohei Narita, Taku Ozawa, Yosuke Aoki, Masanobu Shimada, Masato Furuya, Youichiro Takada & Makoto Murakami: Precursory ground deformation of the 2018 phreatic eruption on Iwo-Yama volcano, revealed by four-dimensional joint analysis of airborne and spaceborne InSAR. Earth Planets Space 72, 145 (2020). https://doi.org/10.1186/s40623-020-01280-5
  35. Yamada, T., A. K. Kurokawa., A. Terada., W. Kanda., H Ueda., H. Aoyama., T. Ohkura., Y. Ogawa., T. Tanada: Locating hydrothermal fluid injection of the 2018 phreatic eruption at Kusatsu-Shirane volcano with volcanic tremor amplitude, Earth, Planets and Space, 73(1), 14, 2021.
  36. Tanioka, Y.: Improvement of near-field tsunami forecasting method using ocean-bottom pressure sensor network (S-net), Earth Planets Space, 2020, doi:10.1186/s40623-020-01268-1
  37. Katsuyama, Y., and M. Inatsu: Advantage of volume scanning video disdrometer in solid-precipitation observation. Scientific Online Letters on the Atmosphere, 17,35–40. 2021
  38. Sugawara, K., M. Inatsu, S. Shimoda, K, Murakami, and T. Hirota: Risk assessment and possible adaptation of potato production in Hokkaido to climate change using a large number ensemble climate dataset d4PDF. Scientific Online Letters on the Atmosphere, in press. 2021
  39. Inatsu, M., R. Yoshida, S. Karino, S. Takeuchi, and S. Kobayashi: A high-resolution prediction system for birch pollen in Sapporo. Agricultural and Forest Meteorology, 29, 108229. 2021
  40. Kawazoe, S., M. Inatsu, T. J. Yamada, and T. Hoshino: Climate change impacts on heavy snowfall in Sapporo with 5-km mesh large ensemble simulations, Scientific Online Letters on the Atmosphere, 16, 233–239. 2020
  41. Inatsu, M., S. Tanji, and Y. Sato: Toward predicting expressway closures due to blowing snow events. Cold Region Science and Technology, 177, 103–123. 2020
  42. Katsuyama, Y., and M. Inatsu: Fitting precipitation particle size-velocity data to mixed joint probability density function with the expectation maximization algorithm. Journal of Atmosphere and Ocean Technology, 37, 911–925. 2020
  43. Katsuyama, Y., M. Inatsu, and T. Shirakawa: Response of snowpack to +2°C global warming in Hokkaido, Japan. Journal of Glaciology, 66, 83–96. 2020
  44. 大久保光・中嶋唯貴・岡田成幸:地震時室内状況把握のためのリアルタイム音情報解析,地域安全学会論文集,37,1-9,2020.11.

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