Simulation on sediment transport in watershed-scale, Alert system for sediment-related disaster, Simulation on flood and inundation affected by sediment yield
Overview of the research
I have been studying about the development and application of the integrated simulation model of sediment production and sediment runoff in a mountainous catchment, sediment management employing the rainfall and sediment runoff model, an alert system to multi-modal sediment-related disaster applicating the runoff model. Currently, I'm trying to develop the large-scale integrated simulation on supercomputer considering water and sediment runoff-inundation during heavy rainfall.
Research Interests
Erosion Control
Debris flow
Landslide
Sediment yields
Sediment-related disaster
Sediment runoff
Research Areas
Social infrastructure (civil Engineering, architecture, disaster prevention), Hydroengineering
Social infrastructure (civil Engineering, architecture, disaster prevention), Disaster prevention engineering
Papers
Prediction of Spatial Distribution of Debris‐Flow Hit Probability Considering the Source‐Location Uncertainty
Kazuki Yamanoi; Satoru Oishi; Kenji Kawaike
Journal of Flood Risk Management, 17 Feb. 2025
CLIMATE CHANGE IMPACT ASSESSMENT ON DEBRIS FLOW INUNDATION AREAS EMPLOYING A PROBABILISTIC SEDIMENT YIELD PREDICTION MODEL
Response of urban flood resilience to climate change: An exploration with a novel performance-based metric considering the socioeconomic impacts of damage costs
Journal of the Japan Society of Erosion Control Engineering, May 2024, Peer-reviewed
Assessment of Climate Change Impact on Sediment Runoff and Sediment-Related Hazards Employing Integrated Simulation of Sediment Production and Runoff
YAMANOI Kazuki; FUJITA Masaharu
JAPANESE JOURNAL OF MULTIPHASE FLOW, 15 Dec. 2023, Invited, Lead author, Corresponding author
Assessing the impact of climate change on sediment discharge using a large ensemble rainfall dataset in Pekerebetsu River basin, Hokkaido
Riho Kido; Takuya Inoue; Misako Hatono; Kazuki Yamanoi
Progress in Earth and Planetary Science, 04 Sep. 2023, Peer-reviewed
Sediment runoff in irrawaddy (ayeyarwaddy) river basin and the sediment management
Myo Thandar; Kazuki Yamanoi; Masaharu Fujita
22nd Congress of the International Association for Hydro-Environment Engineering and Research-Asia Pacific Division, IAHR-APD 2020: "Creating Resilience to Water-Related Challenges", 2020, Peer-reviewed
Numerical simulation of runoff generation and inundation process of an extreme precipitation event in Nepal
Rocky Talchabhadel; Hajime Nakagawa; Kenji Kawaike; Kazuki Yamanoi; Herman Musumari; Tirtha R. Adhikari; Rajaram Prajapati
22nd Congress of the International Association for Hydro-Environment Engineering and Research-Asia Pacific Division, IAHR-APD 2020: "Creating Resilience to Water-Related Challenges", 2020
A method for predicting debris-flow occurrence based on a rainfall and sediment runoff model
Masaharu Fujita; Kazuki Yamanoi; Gota Suzuki
Debris-Flow Hazards Mitigation: Mechanics, Monitoring, Modeling, and Assessment - Proceedings of the 7th International Conference on Debris-Flow Hazards Mitigation, 2019
Combining Deep Learning and Numerical Simulation to Predict Flood Inundation Depth
Bruno Adriano; Naoto Yokoya; Kazuki Yamanoi; Satoru Oishi
IGARSS 2023 - 2023 IEEE International Geoscience and Remote Sensing Symposium, 16 Jul. 2023, Peer-reviewed
3D Simulation of the Effect of Spur Dikes Spacing on Bed Deformation, Flow and Performance Evaluation in Meandering Channels
Heli YU; Kenji KAWAIKE; Kazuki YAMANOI; Takahiro KOSHIBA
Journal of JSCE, 2024, Peer-reviewed
SEDIMENT RUNOFF SIMULATION UNDER THE EFFECT OF SEDIMENT SUPPLY FROM THE BARE SLOPES CAUSED BY EARTHQUAKE-INDUCED LANDSLIDES IN AZUMA RIVER, HOKKAIDO
Appraising the Potential of Using Satellite-Based Rainfall Estimates for Evaluating Extreme Precipitation: A Case Study of August 2014 Event Across the West Rapti River Basin, Nepal
IEEE Transactions on Geoscience and Remote Sensing, 2020, Peer-reviewed
FLOOD EXPERIMENTS CONSIDERING INUNDATED BUILDINGS AND ITS APPLICATION TO VALIDATION OF FUNDAMENTAL INUNDATION MODEL
藤森 健人; 川池 健司; 山野井 一輝; 中川 一
水工学論文集 Annual journal of Hydraulic Engineering, JSCE, 2020, Peer-reviewed
STUDY ON PROBABILISTIC METHOD FOR PREDICTING THE VOLUME OF SEDIMENT YIELD AND ITS DEPOSITION AREA BY USING DATA OF JULY 2018 SEDIMENT DISASTER IN HIROSHIMA PREFECTURE
野口 新之助; 山野井 一輝; 川池 健司; 中川 一
水工学論文集 Annual journal of Hydraulic Engineering, JSCE, 2020, Peer-reviewed
FIELD SURVEY AND NUMERICAL SIMULATION OF FLUVIAL INUNDATION AND SEDIMENT DEPOSITION DUE TO DYKE BREACH OF CHIKUMA RIVER
COMPUTERS AND GEOTECHNICS, Jan. 2020, Peer-reviewed
Development an Integrated Sediment Disaster Simulator and Application to Sediment Disaster Mitigation and Reservoir Sedimentation Management in the Brantas River Basin, Indonesia
SISINGGIH Dian; FUJITA Masaharu; YAMANOI Kazuki
京都大学防災研究所年報. B = Disaster Prevention Research Institute Annuals. B, Sep. 2019, Peer-reviewed