セッション詳細
[PT2]トピック2
2026年10月21日(水) 13:30 〜 18:00
ポスター会場2-1(2階 207会議室)
10/21(水)13:30 -14:30 ポスター設営
10/21(水)14:30 -18:00 ポスター発表
10/22(木)08:30 -16:10 ポスター発表
10/22(木)11:30 -13:00 ポスター発表コアタイム(Topic 2, Topic 3, Topic 6のすべての発表)
10/22(木)16:10 -17:00 ポスター撤収
10/21(水)14:30 -18:00 ポスター発表
10/22(木)08:30 -16:10 ポスター発表
10/22(木)11:30 -13:00 ポスター発表コアタイム(Topic 2, Topic 3, Topic 6のすべての発表)
10/22(木)16:10 -17:00 ポスター撤収
[PT2-01]Extraction of seismic factors influencing the distribution of coseismic landslides triggered by the 2024 Noto Peninsula Earthquake, Japan
Ryo Endo1 (1. Geospatial Information Authority of Japan)
[PT2-02]Micro-Mechanism Insights into Earthquake- and Rainfall-Induced Failures of Volcanic Slopes: The Governing Role of Particle Breakage
Thanh Nguyen1 (1. Graduate School of Engineering, Muroran Institute of Technology)
[PT2-03]Movement of the Landslide Without Breaking Apart Caused by the 2018 Hokkaido Iburi Tobu Earthquake
Tomoya Hayakawa1 (1. Nippon Koei Co., Ltd.)
[PT2-04]Research on the frequent occurrence of large-scale avalanches in Honshu, Japan, triggered by heavy snowfall associated with global warming
Satoru Yamaguchi1 (National Research Institute for Earth Science and Disaster Resilience)
[PT2-05]Passive acoustic monitoring of proglacial discharge: A case study in Qaanaaq, Northwest Greenland
Tomohiro Nakayama1 (1.Arctic Research Center, Hokkaido University)
[PT2-06]Geo-disaster Reports on Geogrid-Reinforced Soil Walls for the 2024 Oku-Noto Heavy Rainfall After the 2024 Noto Peninsula Earthquake
Tetsuya Kubo1 (1. Muroran Institute of Technology)
[PT2-07]Detection and Volume Estimation of Woody Debris Generated by Heavy Rainfall Using Airborne Laser Scanning in the Mibugawa River Basin, Central Japan
Taijiro Fukuyama1 (1. Dept. of Forest and Environmental Symbiosis, Faculty of Agriculture, Shinshu University)
[PT2-08]Insights into the 2024 extreme flood event in Lower Austria
Michael Krapesch1 (1. Institute of Hydraulic Engineering and River Research, BOKU University)
[PT2-09]Effects of Particle Mixture and Slope Angle on Erosion by Dry Granular Impact Flows
JiHoon Lee1 (1. Department of Civil and Environmental Engineering, Kangwon National University)
[PT2-10]Case study for elucidation of the mechanism of the deep-seated landslide caused by the Tenna Nikko Earthquake in 1683 using drone airborne transient electromagnetic measurements
Atsuhiko Kinoshita1 (1. Nikko Sabo Office, Kanto Regional Development Bureau, Ministry of Land, Infrastructure, Transport and Tourism)
[PT2-11]Spatial Variability of Earthquake-Induced Landslides: Implications for Watershed Sediment Dynamics from The Hokkaido Eastern Iburi Earthquake
Yohei Arata1 (1. Forestry Research Institute, Hokkaido Research Organization)
[PT2-12]Vegetation Recovery Following the Expansion of the Large-scale Landslide in Inamata Valley Since 2019
Reiko Akiyama1 (1. Oriental Consultants Co., Ltd.)
[PT2-13]Hydrological Response to Rainfall and Soil Physical Properties in Nachigawa River Basin, Japan
Emilia Tanaami1 (1. Graduate School of Science and Technology, University of Tsukuba)
[PT2-14]Study of Impact on Damage of Flood Caused by Sediment Estimates Taking into Account Increased Rainfall in Mountainous Areas due to Climate Change - Case study in the Kii Mountains -
Yuki Kishimoto1 (1. Sabo Risk Management Laboratory, National Institute for Land and Infrastructure Management)
[PT2-15]History of Countermeasures Following Deep-Seated Landslides in Kii Mountain District - The Case of Akadani District -
Takuya Yamada1 (1. Kii Mountain District Sabo Office, Kinki Regional Bureau)
[PT2-16]Future Hazard Risk Assessment and Delineation of a Special Soil and Water Conservation Area for a Recurrent Debris-Flow Watershed under Extreme Rainfall: A Case Study of the DF206 Watershed, Taiwan
Pei-Ru Wang1 (1. Department of Civil Engineering, Chienkuo Technology University)
[PT2-17]Mechanical behavior of volcanic soil (Ta‑d) triggering landslides in the 2018 Hokkaido Eastern Iburi earthquake
Kimika Kawamura1 (1. Kiso-Jiban Consultants Co.,Ltd.)
[PT2-18]Analysis of particle mixture layer in immature debris flow moving over fixed bed using image analysis
Kohei Sato1 (1. National Institute for Land and Infrastructure Management)
