セッション詳細

[PT4]トピック4

2026年10月20日(火) 13:30 〜 18:00
ポスター会場2-2(2階 207会議室)
10/20(火)12:00 -13:30 ポスター設営
10/20(火)13:30 -18:00 ポスター発表
10/20(火)16:30 -18:00 ポスター発表コアタイム(Topic 1, Topic 4, Topic 5の発表番号奇数)
10/21(水)08:30 -13:00 ポスター発表
10/21(水)11:30 -13:00 ポスター発表コアタイム(Topic 1, Topic 4, Topic 5の発表番号偶数, Student Awardsのすべての発表)
10/21(水)13:30 -14:30 ポスター撤収

[PT4-01]Quantitative evaluation of the sediment movement occurrence probability considering various factors in forest areas of Japan

Hiromi Akita1 (1. National Research Institute for Earth Science and Disaster Resilience)

[PT4-02]Near-Real-Time Landslide Prediction Using Artificial Intelligence Models Integrated with Physically Based TRIGRS Simulations

Yang Song-Yue1 (1. Department of Urban Planning and Spatial Information, Feng Chia University, Taiwan)

[PT4-03]Developing Landslide disaster alert system“Dosha-Kiji“

Hiroaki Nakanishi1 (1. CTI Engineering Co., Ltd., Tokyo Headquarters, Sabo Sector)

[PT4-04]Projects to increase public awareness of natural hazards

Valerie Oswald1 (1. Austrian Service for Torrent and Avalanche Control, Upper Austria)

[PT4-05]Towards coherent official warning services - strategic considerations for the advancement of multi-hazard platforms -

Christophe Lienert1 (1. Secretariat Swiss Steering Committee on Intervention in Natural Hazards LAINAT, c/o Swiss Federal Office for the Environment BAFU)

[PT4-06]Support for Foreign Tourists during Evacuations Concerning the Sediment-related Disasters

Mizuki Kawai1 (1. Department of Planning and Research, Sabo Frontier Foundation)

[PT4-07]Analysis of Landslide Early-Warning Accuracy Improvement Using Mountain Meteorology Observation System (AMOS)

Song Eu1 (1. Landslide Division, Dept. of Forest Disaster and Environment Research, National Institute of Forest Science)

[PT4-08]A Study on Drone-LiDAR-Based Hazard Risk Assessment for Steep Slopes

Hang Jo1 (1. Granduate School of Disaster Prevention, Kangwon National University)

[PT4-09]Climate and Forest Effects in Avalanche Susceptibility Maps

Kjersti Gisnås1 (1. Natural Hazards Division, Norwegian Geotechnical Institute)

[PT4-10]Educating for Resilience to Climate-Driven Geohazards through International Collaboration – Experience from the GEOMME Partnership’s Journey in Research and Education

Graham Gilbert1 (1. Natural Hazards Division – Norwegian Geotechnical Institute (NGI))

[PT4-11]Canopy Height as a Key Structural Control on Soil Surface Erosion Under Natural Rainfall and Rainfall Simulation

Khwaja Haqdad1 (1. Dept. of Civil and Environmental Engineering, Ritsumeikan University)

[PT4-12]Effects of Earthquake-Induced Slope Deformation from the January 2024 Noto Peninsula Earthquake on Sediment Disasters Caused by the September 2024 Oku-Noto Heavy Rainfall

Hiromu Daimaru1 (1. Department of Environmental Science, Ishikawa Prefectural University)

[PT4-13]Phased Roadmap for the Transition from Conceptual to Operational On-Site Landslide Response Management

Sujin Jang1 (1. Forest Disaster Prediction & Analysis Division, National Institute of Forest Science)

[PT4-14]Development of Criteria for Preventive Road Closures in Extreme Weather Conditions based on Quantitative Risk Evaluation

Yasuhiro Kimoto1 (1.Prefectural Land Development Department, Wakayama Prefectural Government)

[PT4-15]Development of the system for analyzing the unprecedented rainfall index (Tp) and its behavior during the 2025 rainfall event

Shigetaka Takiguchi1 (1. SABO Department, National Institute for Land and Infrastructure Management, Japan)

[PT4-16]A Study on the Feasibility of Applying Precipitation Forecasts from the MEPS (Mesoscale Ensemble Prediction System) to Sediment disaster warning information

Reiya Shiomi1 (1. National Institute For Land and Infrastructure Management, Ministry of Land, Infrastructure, Transport and Tourism)

[PT4-17]From engagement to awareness: communicating geo-hydrological risk through student activities in Italy

Paola Salvati1 (1. National Research Council, Research Institute for Geohydrological Risk (CNR-IRPI))

[PT4-18]Statistical analysis of the likelihood of debris flow disasters due to post-earthquake rainfall

Motoki Ito1 (1. Ministry of Land, Infrastructure, Transport and Tourism)

[PT4-19]Initiatives for “Infrastructure Geo‑Tourism” around Mt. Tokachidake

Hideaki Ioki1 (1.Development Partnership Division, Development Administration Department, Hokkaido Regional Development Bureau, Ministry of Land, Infrastructure, Transport and Tourism (MLIT))

[PT4-20]Strengthening Resilience and Preparedness to Prevent and React to Emerging Socio-Natural Hazards and Risks

Sophia Sternath1 (1. Department of Geography and Regional Research, University of Vienna)

[PT4-21]Enhancing Flood Risk Management through Bidirectional Information Systems: The RED ROSES Platform for Community-Centered Early Warning and Response

Simone Sterlacchini1 (1. National Research Council of Italy (CNR), Institute of Environmental Geology and Geoengineering, Laboratory of Risk Analysis and Emergency Management)

[PT4-22]Development of a Channelized Debris-Flow Identification Model and Potential Assessment Method in Sedimentary Rock Areas Using Terrain Analysis

Tien-Chien Chen1 (1. Department of Soil and Water Conservation, National Pingtung University of Science and Technology)

[PT4-23]Ground Subsidence Susceptibility Mapping Using Machine Learning: A Case Study of Busan, South Korea

Joon-Young Park1 (1. Geological Safety Division, Korea Institute of Geoscience and Mineral Resources (KIGAM))

[PT4-24]Development of a microcontroller-based wireless vibration sensor and its application to winter-season field tests

Takaaki Abe1 (1. Cold-Region Hydraulic and Aquatic Environment Engineering Research Group, Civil Engineering Research Institute for Cold Region)