Rchr
J-GLOBAL ID:201801019308709150   Update date: Mar. 21, 2024

Furuichi Mikito

フルイチ ミキト | Furuichi Mikito
Affiliation and department:
Job title: グループリーダー (主任研究員)
Homepage URL  (1): https://www.jamstec.go.jp/mat/j/members/m-furuic/index.html
Research field  (2): Solid earth science ,  Computational science
Research theme for competitive and other funds  (7):
  • 2022 - 2025 Elucidation of ground infiltration failure mechanism by high-resolution transparent ground experiments and large-scale numerical simulation
  • 2022 - 2025 地震波解析と数値計算に基づく複数海山の沈み込みが作る変形構造・応力場の解明
  • 2019 - 2023 Dynamic mechanism of turbidity current for long-distance sediment transport through integration of numerical science and high resolution measurement technique
  • 2019 - 2023 Shear-strength variation along subducting mega-thrust- their influence on the geometry of accretionary prism
  • 2018 - 2023 Stress state in accretionary prisms from the real-scale numerical sand-box experiment
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Papers (36):
  • Mikito Furuichi, Jian Chen, Daisuke Nishiura, Ryuta Arai, Yuzuru Yamamoto, Satoshi Ide. Virtual earthquakes in a numerical granular rock box experiment. Tectonophysics. 2024
  • Sota Arakawa, Misako Tatsuuma, Hidekazu Tanaka, Mikito Furuichi, Daisuke Nishiura. Interparticle normal force in highly porous granular matter during compression. Physical Review E. 2024
  • Jian Chen, Mikito Furuichi, Daisuke Nishiura. Toward large-scale fine resolution DEM landslide simulations: periodic granular box for efficient modeling of excavatable slope. Computers and Geotechnics. 2024. 165. 105855-105855
  • Natsuki Hosono, Mikito Furuichi. Efficient implementation of low-order-precision smoothed particle hydrodynamics. The International Journal of High Performance Computing Applications. 2023
  • Mikito Furuichi, Jian Chen, Daisuke Nishiura, Ryuta Arai, Yuzuru Yamamoto. Thrust formation using a numerical granular rock box experiment. Tectonophysics. 2023. 862. 229963-229963
more...
MISC (2):
Lectures and oral presentations  (12):
  • 大規模個別要素法計算による地すべりシミュレーションの取り組み
    (土木学会応用力学委員会 混相流、粒状体シミュレーションの最前線 2022)
  • Parallelization of DEPTH (DEM based Parallel mulTi pHysics simulator) for HPC
    (The 2nd CCP-WSI Code Developers Workshop 2021)
  • Orientation of the SHmax in accretionary prisms from real-scale numerical sandbox experiments
    (地球惑星連合2018年大会 2018)
  • Development of Parallel Particle Simulation Code and Challenges with Huge Granular System
    (18th SIAM Conference on Parallel Processing for Scientific Computing 2018)
  • 大規模な応力鎖解析による断層形成メカニズムの解明
    (シミュレーションを支える基盤研究 2017)
more...
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