Rchr
J-GLOBAL ID:201901006111794670   Update date: Oct. 10, 2024

Nishiura Daisuke

ニシウラ ダイスケ | Nishiura Daisuke
Affiliation and department:
Job title: Senior Researcher
Homepage URL  (1): https://www.jamstec.go.jp/mat/j/members/daisuke/
Research field  (1): Computational science
Research theme for competitive and other funds  (8):
  • 2024 - 2028 Granular numerical rock-box experiments for understanding the unified system of structural development and earthquakes
  • 2022 - 2025 Elucidation of ground infiltration failure mechanism by high-resolution transparent ground experiments and large-scale numerical simulation
  • 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
  • 2015 - 2018 Development of particle-based simulation method for viscoelastic materials towards elucidation of subsidence mechanisms of ballasted track
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Papers (63):
  • Sota Arakawa, Hidekazu Tanaka, Eiichiro Kokubo, Satoshi Okuzumi, Misako Tatsuuma, Daisuke Nishiura, Mikito Furuichi. On the elastoplastic behavior in collisional compression of spherical dust aggregates. Granular Matter. 2024. 26. 4
  • Akira Aikawa, Hirotaka Sakai, Daisuke Nishiura. Elastic discrete element analysis of natural vibration characteristics and settlement behavior of railway ballasted track. Transportation Geotechnics. 2024. 48. 101303-101303
  • Yi Zhang, Takuro Nunoura, Daisuke Nishiura, Miho Hirai, Shigeru Shimamura, Kanako Kurosawa, Chieko Ishiwata, Shigeru Deguchi. Correction: A single-molecule counting approach for convenient and ultrasensitive measurement of restriction digest efficiencies. PLOS ONE. 2024. 19. 8. e0308550-e0308550
  • Mikito Furuichi, Jian Chen, Daisuke Nishiura, Ryuta Arai, Yuzuru Yamamoto, Satoshi Ide. Virtual earthquakes in a numerical granular rock box experiment. Tectonophysics. 2024. 874. 230230-230230
  • Sota Arakawa, Misako Tatsuuma, Hidekazu Tanaka, Mikito Furuichi, Daisuke Nishiura. Interparticle normal force in highly porous granular matter during compression. Physical Review E. 2024
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MISC (73):
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Patents (9):
Education (1):
  • 1999 - 2008 Doshisha University Graduate School of Engineering Department of Applied Chemistry
Work history (3):
  • 2018/04 - 現在 Japan Agency for Marine-Earth Science and Technology Senior Researcher
  • 2011/04 - 2018/03 Japan Agency for Marine-Earth Science and Technology Scientist
  • 2008/04 - 2011/03 Japan Agency for Marine-Earth Science and Technology Institute for Research on Earth Evolution Postdoctoral Researcher
Awards (8):
  • 2020 - The Society of Powder Technology, Japan Best Paper Award
  • 2017/06 - The Japan Society for Computational Engineering and Science Visualization Award (Excellence Award)
  • 2017/06 - The Japan Society for Computational Engineering and Science Visualization Award (Special Award)
  • 2016/06 - The Japan Society for Computational Engineering and Science Visualization Award (Best Award)
  • 2014/06 - The Japan Society for Computational Engineering and Science Visualization Award (Special Award)
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Association Membership(s) (1):
THE JAPAN SOCIETY FOR COMPUTATIONAL ENGINEERING AND SCIENCE
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

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