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个人简介

教育经历 1999.04~2000.03 日本京都大学 地质工程 博士后 1996.04~1999.03 日本京都大学 地球物理学 博士 1986.09~1989.06 长春地质学院 地质工程 硕士 1982.09~1986.07 长春地质学院 地质工程 大学本科毕业 工作经历 2020.05~至今 同济大学 土木工程学院 教授 2013.01~2020.04 日本岛根大学 自然灾害与减灾研究中心 主任 2012.10~2020.05 日本岛根大学 综合理工学部地球科学系 教授 2010.04~2012.09 日本岛根大学 综合理工学部地球科学系 副教授 2004.06~2010.03 日本京都大学 防灾研究所 助理教授 2002.10~2004.05 日本金泽大学 土木与建设工程系 副教授 2000.05~2002.09 日本金泽大学 土木与建设工程系 讲师 1992.07~1995.09 长春地质学院 水文地质及工程地质系 讲师 1989.07~1992.06 长春地质学院 水文地质及工程地质系 助教 学术荣誉 2019年, 日本工程院外籍院士 2018年,国家海外高层次引进人才计划 其他奖励 2020年, Three-dimensional seismic slope stability assessment with the application of Scoops3D and GIS: a case study in Atsuma, Geoenvironmental Disasters期刊年度最优论文, 排名第2

研究领域

高速远程滑坡的运动机理研究 地震降雨诱发滑坡机制研究 滑坡发生和运动的时空预测理论与方法研究 重大工程与地质环境的相互影响研究 重大滑坡防控对策与方法研究 地质灾害调查的物探方法与原位测试技术开发

近期论文

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Wang FW, Chen Y, Yan KM (2023) A destructive mudstone landslide hit a high?speed railway on 15 September 2022 in Xining city, Qinghai province, China. Landslides, 1-5, online first Yan K, Wang FW, Fan G, Liu Y, Nam K, Zhang B (2023) The Azijue debris flow induced by rainfall on 30 August 2020 in Ganluo County, Sichuan Province, southwestern China. Landslides, 1-14, online first Nam K, Wang FW, Yan K, Zhu G (2023) Characteristics and time-series monitoring by GOES-17 of volcano fume on 15 January 2022 from Tonga submarine volcanic eruption. Geoenvironmental Disasters, 10:2, 1-17. Yang H, Xing B, He J, Cheng Q, Wang FW (2023) The kinematic characterization of a rockfall in Zagunao Valley in the eastern margin of the Tibetan Plateau. Landslides, 1-14. Wang FW, Chen Y, Peng X, Zhu G, Yan K, Ye Z (2022) The fault?controlled Chengtian landslide triggered by rainfall on 20 May 2021 in Songyang County, Zhejiang Province, China. Landslides, 1-15. Wang FW, Yan K, Nam K, Zhu G, Peng X, Zhao Z (2022) The Wuxie debris flows triggered by a record?breaking rainstorm on 10 June 2021 in Zhuji City, Zhejiang Province, China. Landslides, 1-22 Wang FW, Zhao Z, Chen Y, Zhu G, Nam K, Ye Z (2022) Guocun landslide in a slate slope with dip structure on 27 March 2021 in Tonglu County, Zhejiang Province, China. Landslides, 1-13 Zhang S, Wang FW, Li R (2022) First insight into the catastrophic Atami debris flow induced by a rain gush on 3 July 2021 in Shizuoka, Japan. Landslides, 1-6 Song K, Wang FW, Zuo Q, Huang B, Mao W, Zheng H (2021) Successful disaster management of the July 2020 Shaziba landslide triggered by heavy rainfall in Mazhe Village, Enshi City, Hubei Province, China. Landslides, 18 (10): 3503-3507 Wang FW, Zhang S, Li R, Zhou R, Auer A, Ohira H, Dai Z, Inui T (2021) Hydrated halloysite: the pesky stuff responsible for a cascade of landslides triggered by the 2018 Iburi earthquake, Japan. Landslides, 18 (8): 2869-2880 Li DY, Nian TK, Wu H, Wang FW, Zheng L (2020) A predictive model for the geometry of landslide dams in V-shaped valleys. BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT, 79:4595-4608 Li R, Wang FW, Zhang S (2020) Failure mechanism of a flow-like landslide triggered by the 2018 Western Shimane Earthquake. Landslides, 17:2359-2371 Wang FW, Dai Z, Takahashi I, Tanida Y (2020) Soil moisture response to water infiltration in a 1-D slope soil column model. Engineering Geology, 267:105482 Nam K, Wang FW (2020) An extreme rainfall-induced landslide susceptibility assessment using autoencoder combined with random forest in Shimane Prefecture, Japan. Geoenvironmental Disasters 7 (1), 6 Li R, Wang FW, Zhang S (2020) Controlling role of Ta-d pumice on the coseismic landslides triggered by 2018 Hokkaido Eastern Iburi Earthquake. Landslides, 1-18 Zhang S, Wang FW (2019) Three-dimensional seismic slope stability assessment with the application of Scoops3D and GIS: a case study in Atsuma, Hokkaido. Geoenvironmental Disasters 6 (1), 9 Nam K, Wang FW (2019) The performance of using an autoencoder for prediction and susceptibility assessment of landslides: A case study on landslides triggered by the 2018 Hokkaido Eastern Iburi earthquake. Geoenvironmental Disasters 6 (1), 19 Dhungana P, Wang FW (2019) The relationship among the premonitory factors of landslide dam failure caused by seepage: an experimental study. Geoenvironmental Disasters 6 (1), 17 Guo X, Nian T, Wang FW, Zheng L (2019) Landslides impact reduction effect by using honeycomb-hole submarine pipeline. Ocean Engineering 187, 106155 Dai Z, Wang FW, Cheng Q, Wang Y, Yang HF, Lin Q, Yan K, Liu F, Li K (2019) A giant historical landslide on the eastern margin of the Tibetan Plateau. Bull Eng Geol Environ, 78 (3), 2055-2068 Wang FW (2019) Liquefactions caused by structure collapse and grain crushing of soils in rapid and long runout landslides triggered by earthquakes. Chinese Journal on Engineering Geology, 27 (1), 98-107 Zhang S, Wang FW (2019) Three-dimensional seismic slope stability assessment with the application of Scoops3D and GIS: a case study in Atsuma, Hokkaido. Geoenvironmental Disasters, 6:9 Zhang S, Li R, Wang FW, Iio A (2019) Characteristics of landslides triggered by the 2018 Hokkaido Eastern Iburi earthquake, Northern Japan. Landslides, 16 (9), 1691-1708 Wang FW, Okeke ACU, Kogure T, Sakai T, Hayashi H (2018) Assessing the internal structure of landslide dams subject to possible piping erosion by means of microtremor chain array and self-potential surveys. Engineering Geology 234, 11-26 Wang FW, Dai Z, Nakahara Y, Sonoyama T (2018) Experimental study on impact behavior of submarine landslides on undersea communication cables. Ocean Engineering, 148, 530-537 Wang FW, Dai Z, Okeke ACU, Mitani Y, Yang HF (2018) Experimental study to identify premonitory factors of landslide dam failures. Engineering Geology, 232, 123-134 Song K, Wang FW, Yi QL, Lu SQ (2018) Landslide deformation behavior influenced by water level fluctuations of the Three Gorges Reservoir (China). Engineering Geology, 247, 58-68 Dai Z, Wang FW, Cheng Q (2018) Deposit morphology of Luanshibao Landslide in Tibetan Plateau. Quarterly Journal of Engineering Geology and Hydrogeology 51 (1), 13-16 Dai Z, Wang FW, Cheng Q, Wang Y, Yang HF, Lin Q, Yan K, Liu F, Li K (2018) A giant historical landslide on the eastern margin of the Tibetan Plateau. Bull Eng Geol Environ, https://doi.org/10.1007/s10064-017-1226-x, 1-14 Ma P, Peng J, Li T, Wang F, W Q, Zhu X (2018) Forming mechanism and motion characteristics of the "3·8" Jiangliu loess landslide in Jingyang County of Shanxi Province. Chinese Journal on Engineering Geology, 26 (3), 663-672 Wang FW, Dai Z, Zhang S (2017) Experimental study on the motion behavior and mechanism of submarine landslides. Bull Eng Geol Environ 77(3):1117-1126 Dai Z, Wang FW, Q Cheng (2017) Deposit morphology of Luanshibao Landslide in Tibetan Plateau. Quarterly Journal of Engineering Geology and Hydrogeology, https://doi.org/10.1144/qjegh2017-062 Dai Z, Wang FW, Song K, Iio A (2017) A first look at a landslide triggered by the 2016 Kumamoto earthquake near the Aso Volcanological Laboratory. Quarterly Journal of Engineering Geology and Hydrogeology, 50, 111-116 Song K, Wang FW, Dai ZL, Iio A, Osaka O, Sakata S (2017) Geological characteristics of landslides triggered by the 2016 Kumamoto earthquake in Mt. Aso volcano, Japan. Bulletin of Engineering Geology and the Environment, pp 1-10 Wang FW, Miyajima M, R Dahal, M Timilsina, T Li, M Fujiu, Y Kuwada (2016) Effects of topographic and geological features on building damage caused by 2015.4. 25 Mw7. 8 Gorkha earthquake in Nepal: a preliminary investigation report. Geoenvironmental Disasters 3 (1), 1-17. Okeke ACU, Wang FW (2016) Critical hydraulic gradients for seepage-induced failure of landslide dams. Geoenvironmental Disasters 3:9. Okeke ACU, Wang FW (2016) Hydromechanical constraints on piping failure of landslide dams: an experimental investigation. Geoenvironmental Disasters 3:4. Yang HF, Wang FW, Vilímek V, Araiba K, Asano S (2015) Investigation of rainfall-induced shallow landslides on the northeastern rim of Aso caldera, Japan, in July 2012. Geoenvironmental Disasters, 2:20. Wang FW, Wu YH, Yang HF, Tanida Y and Kamei A (2015) Preliminary investigation of the 20 August 2014 debris flows triggered by a severe rainstorm in Hiroshima City, Japan. Geoenvironmental Disasters, 2:17. Yang HF, Wang FW, Miyajima K (2015) Investigation of shallow landslides triggered by 3 heavy rainfall during typhoon Wipha (2013), Izu Oshima Island, Japan. Geoenvironmental Disasters, 2:15. Faris F, Wang FW (2014) Stochastic analysis of rainfall effect on earthquake induced shallow landslide of Tandikat, West Sumatra, Indonesia. Geoenvironmental Disasters, 1:12. Wang FW, Sun P, Highland L, Cheng QG (2014) Key factors influencing the mechanism of rapid and long runout landslides triggered by the 2008 Wenchuan earthquake, China. Geoenvironmental Disasters, 1:1. Faris F, Wang FW (2014): Investigation of the initiation mechanism of an earthquake- induced landslide during rainfall: a case study of the Tandikat landslide, West Sumatra, Indonesia. Geoenvironmental Disasters, 1:4. Igwe O, Wang FW, Sassa K, Fukuoka H (2014) The laboratory evidence of phase transformation from landslide to debris flow. Geosciences Journal, 18(1):31-44. Wang FW, Muhammad Wafid AN, Zhang FY, Takeuchi A (2011). Tandikek and Malalak rapid and long runout landslide triggered by West Sumatra earthquake 2009 (M7.6) in Indonesia. Journal of the Japan Landslide Society, 48(4):29-34. Wang FW, Shan W, Guo Y, Takeuchi A (2010) Using vegetation as countermeasure to prevent shallow slope failure in a seasonally frozen area. Japanese Geotechnical Engineering magazine, 58(9):18-21 (in Japanese). Wang FW, Sassa K (2010) Landslide simulation by geotechnical model adopting a model for apparent friction changing. Physics and Chemistry of the Earth, 35(3-5):149-161. Sun P, Wang FW, Yin YP, Wu SR (2010) An experimental study on the mechanism of rapid long runout landslide triggered by Wenchuan earthquake. Seismology and Geology, 32(1):98-106. Boldini D, Wang FW, Sassa K, Tommasi P (2009) Application of large scale ring shear tests to the analysis of tsunamogenic landslides at Stromboli. Landslides, 6(3):231-240 . Hu MJ, Wang FW, Cheng QG (2009) Formation of tremendous Yigong landslide based on high-speed shear tests. 岩土工程学报, 31(10):1602-1606. Yin YP, Wang FW, Sun P (2009) Landslide hazards triggered by the 2008 Wenchuan earthquake, Sichuan, China. Landslides, 6(2):139-152. Wang FW, Q.G. Cheng, L. Highland, Miyajima M, H.B. Wang, C.G. Yan (2009) Preliminary investigations of some large- scale landslides triggered by the 2008 Sichuan earthquake. Landslides, 6(1):47-54. Luo XQ, Wang FW, Zhang ZH, Che AL (2008) Establishing a monitoring network for an impoundment-induced landslide in Three Gorges Reservoir Area, China. Landslides, 6(1), 27-38. Wang FW, Zhang YM, Huo ZT, Peng XM, Wang SM, Yamasaki S (2008) Mechanism for the rapid motion of the Qianjiangping landslide during reactivation by the first impoundment of the Three Gorges Dam Reservoir, China. Landslides, 5(4):379-386. Wang FW, Zhang YM, Huo ZT, Peng XM, Araiba K, Wang G (2008) Movement of the Shuping landslide in the first four years after the initial impoundment of the Three Gorges Dam Reservoir, China. Landslides, 5(3):321-330. Wang FW, Araiba K, Zhang YM, Huo ZT, Wang G, Peng XM (2008) Displacement monitoring on Shuping landslide in the Three Gorges Dam Reservoir area, China. J. of Japan Landslide Society, 44(2):68-74 . Wang FW, Araiba K, Zhang Y, Huo Z, Wang G, Peng X (2007) Displacement monitoring on Shuping landslide in the Three Gorges Dam Reservoir area, China. Journal of the Japan Landslide Society, 44 (6):406-412 (in Japanese). Wang FW, Shibata H (2007) Influence of soil permeability on rainfall-induced flowslides in laboratory flume tests. Canadian Geotechnical Journal, 44(9):1128-1136. Wang FW, Okuno T, Matsumoto T (2007) Deformation characteristics and influential factors for the giant Jinnosuke-dani landslide in the Haku-san Mountain area, Japan. Landslides, 4(1):19-31. Wang FW, Sassa K (2007) Initiation and traveling mechanisms of the May 2004 landslide – debris flow at Bettou-dani of the Jinnosuke-dani landslide, Haku-san Mountain, Japan. Soils and Foundations, 47(1):143-154. Wang FW, Zhang YM, Wang G, Peng XM, Huo ZT, Jin WQ, Zhu CQ (2007) Deformation features of the Shuping landslide Caused by Water Level Changes in Three Gorges Reservoir area, China. 岩石力学与工程学报, 26(3):509-517. Wang FW, Matsumoto T, Tanaka Y (2005) Two recent flowslides in Yamashina area, Kanazawa City, Japan. Landslides, 2(3):229-234. Wang FW (2005) Fluidization mechanisms and motion simulation on flowslides triggered by earthquake and rainfall. 岩石力学与工程学报, 24(10):1654-1661. Tanaka Y, Wang FW, Nakamura K, Matsumoto T (2005) Feature and sliding mechanism of a flowslide triggered by continual rainfall in Yamashina area, Kanazawa City, Japan. Journal of the Japan Landslide Society, 42(2) 34-43 (In Japanese with English abstract). Sassa K, Wang G, Fukuoka H, Wang FW, Ochiai T, Sugiyama M, Sekiguchi T (2004) Landslide risk evaluation and hazard zoning for rapid and long-travel landslides in urban development areas. Landslides, 1(3):221-235. Wang FW, Zhang YM, Huo ZT, Matsumoto T, Huang BL (2004) The July 14, 2003 Qianjiangping Landslide, Three Gorges Reservoir, China. Landslides, 1(2):157-162. Wang FW, Sassa K, Matsumoto T, Okuno T (2004) Sliding mechanism and motion prediction of flowslides in crushable soils. Journal of the Japan Landslide Society, 40(5) 377-388 (In Japanese with English abstract). Wang FW, Okuno T (2004) Deforming mechanism of the giant Jinnosuke-dani landslide in Haku-san mountainous area, Japan. Journal of Geological Hazards and Environment Preservation, 15(3):48-54. Okuno T, Wang FW, Matsumoto T (2004) The deforming style and influencing factors of the Giant Jinnosuke-Dani landslide in Haku-san mountainous area. Journal of the Japan Landslide Society, 41(1) 57-64 (In Japanese with English abstract) . Wang FW, Sassa K, Wang G (2003) Mechanism of the long runout Hiegaesi landslide triggered by heavy rainfall. Landslide News, No.14/15:15-18. Wang FW, Sassa K, Wang G (2002) Mechanism of a long-runout landslide triggered by the August 1998 heavy rainfall in Fukushima Prefecture, Japan. Engineering Geology, 63:169-185. Wang FW, Katsuro H, Matsumoto S, Matsumoto T Yokoyama M, Toda M (2001) Applicability of the Sarma’s, Morgenstern-Price’s and Janbu’s slope stability analysis method –A case study on the Tsuchikura landslide, Toyama Prefecture, Japan-. Journal of the Japan Landslide Society, 38(3) 107-107 (In Japanese with English abstract). Wang FW (2001) Mechanism of rapid landslides: Excess pore pressure generation caused by grain crushing. 长春科技大学学报, 31(1):64-69 (in Chinese with English abstract). Wang FW, Sassa K, Fukuoka H (2000) Geotechnical simulation test for the Nikawa landslide induced by 1995.1.17 Hyogoken-Nambu earthquake. Soils and Foundations, 40(1):35-46. Wang FW, Sassa K (2000) Relationship between grain crushing and excess pore pressure generation by sandy soils in ring-shear tests. Journal of Natural Disaster Science, 22(2):87-96.

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