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J-GLOBAL ID:202001009872945974   Update date: Apr. 23, 2024

Sakane Shinji

サカネ シンジ | Sakane Shinji
Affiliation and department:
Job title: Assistant Professor
Homepage URL  (2): https://www.cis.kit.ac.jp/~sakane/index.htmlhttps://www.cis.kit.ac.jp/~sakane/index_en.html
Research field  (4): Material fabrication and microstructure control ,  Machine materials and mechanics ,  Computational science ,  High-performance computing
Research keywords  (3): Computational Mechanics ,  GPU computing ,  Solidification
Research theme for competitive and other funds  (4):
  • 2023 - 2026 Elucidation of semi-solid dynamics by innovative computational method and challenge to material microstructure refinement
  • 2020 - 2023 Development of advanced simulator for solidification microstructure prediction and its application to integration technology of simulation and experiment
  • 2021 - 2023 Development of accurate prediction method for solidification microstructure in additive manufacturing by high-performance phase-field simulation
  • 2018 - 2020 凝固組織微細化のための大規模マルチフィジックスphase-field計算法の確立
Papers (46):
  • Tomohiro Takaki, Yasumasa Mitsuyama, Shinji Sakane, Munekazu Ohno, Yasushi Shibuta, Takayuki Aoki. Computing the permeability of tilted columnar dendrites with phase-field and lattice Boltzmann methods. International Journal of Thermofluids. 2024
  • Tomohiro Takaki, Shinji Sakane, Ryosuke Suzuki. High-performance GPU computing of phase-field lattice Boltzmann simulations for dendrite growth with natural convection. IOP Conference Series: Materials Science and Engineering. 2023. 1281. 1. 012056-012056
  • A Yamamura, S Sakane, M Ohno, H Yasuda, T Takaki. Development of a data assimilation system for the investigation of the dendrite solidification process by integrating in situ X-ray imaging and phase-field simulation. IOP Conference Series: Materials Science and Engineering. 2023. 1281. 1. 012049-012049
  • S Sakane, T Aoki, T Takaki. Phase-field lattice Boltzmann simulation of three-dimensional settling dendrite with natural convection during nonisothermal solidification of binary alloy. IOP Conference Series: Materials Science and Engineering. 2023. 1281. 1. 012053-012053
  • Y Imai, S Sakane, M Ohno, H Yasuda, T Takaki. Preliminary system for data assimilation to infer material parameters from directional solidification experiments: twin experimental study using phase-field method. IOP Conference Series: Materials Science and Engineering. 2023. 1274. 1. 012040-012040
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MISC (27):
  • 大野宗一, 岡ゆきみ, 坂根慎治, 澁田靖, 高木知弘. Estimation of solid-liquid interface properties in pure Fe by combining molecular dynamics and phase-field simulations using data assimilation. 材料とプロセス(CD-ROM). 2021. 34. 1
  • 高木知弘, 坂根慎治, 光山容正, 大野宗一, 澁田靖, 青木尊之. Permeability prediction of liquid flow in equiaxed dendritic structures by phase-field and lattice Boltzmann methods. 材料とプロセス(CD-ROM). 2021. 34. 1
  • 高木 知弘, 坂根 慎治, 大野 宗一, 澁田 靖, Ryotaro Sato. 運動を伴うデンドライト成長phase-fieldモデルへのdouble-obstacleポテンシャルの適用-Application of Double-obstacle Potential to Phase-field Model of Dendrite Growth with Motion. 計算工学講演会論文集 = Proceedings of the Conference on Computational Engineering and Science / 日本計算工学会 編. 2019. 24. 4p
  • 坂根 慎治, 高木 知弘, 大野 宗一, 澁田 靖, 青木 尊之. AMR法を適用したphase-fieldデンドライト凝固計算の複数GPU並列化-Multi-GPUs parallelization for phase-field simulations of dendrite growth applying an adaptive mesh refinement method. 計算工学講演会論文集 = Proceedings of the Conference on Computational Engineering and Science / 日本計算工学会 編. 2019. 24. 4p
  • 坂根慎治, 高木知弘, 大野宗一, 澁田靖, 青木尊之. Multi-GPUs parallel computation for AMR phase-field simulation of dendrite growth with liquid flow and solid motion. 日本機械学会計算力学講演会論文集(CD-ROM). 2019. 32nd
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Lectures and oral presentations  (207):
  • Multi-phase-field格子ボルツマン法による固液共存体へのせん断力作用方法の検討
    (日本鉄鋼協会 第186回秋季講演会 2023)
  • 固液界面異方性が溶融亜鉛めっきスパングル集合組織形成に及ぼす影響
    (日本鉄鋼協会 第186回秋季講演会 2023)
  • MPF-LBシミュレーションによる固液共存体のせん断変形挙動の系統的評価
    (日本鉄鋼協会 第186回秋季講演会 2023)
  • PBFにおける溶融池内の液相流動と組織発展のmulti-phase-fieldモデリング
    (日本金属学会 2023年秋期(第173回)講演大会 2023)
  • デンドライト成長の高精度予測に向けたX線観察とphase-field計算を融合するデータ同化の開発
    (日本金属学会 2023年秋期(第173回)講演大会 2023)
more...
Education (3):
  • 2017 - 2020 Kyoto Institute of Technology Graduate School of Science and Technology Doctoral Program of Engineering Design
  • 2015 - 2017 Kyoto Institute of Technology Graduate School of Science and Technology Master's Program of Mechanophysics
  • 2011 - 2015 Kyoto Institute of Technology School of Science and Technology Undergraduate Program of Mechanical and System Engineering
Work history (3):
  • 2020/03 - 現在 Kyoto Institute of Technology Faculty of Mechanical Engineering Assistant Professor
  • 2022/10 - 2023/09 National University of Singapore Visiting scholar
  • 2018/04 - 2020/03 Japan Society for the Promotion of Science Research Fellowship for Young Scientists (DC2)
Committee career (1):
  • 2022/04 - 現在 日本鉄鋼協会高温プロセス部会若手フォーラム 運営委員
Awards (14):
  • 2022/04 - The Japan Society of Mechanical Engineers JSME Young Engineers Award "A Study on Accurate Prediction of Solidification Microstructure by Large-Scale Phase-Field Simulation"
  • 2020/03 - Kyoto Institute of Technology 学長表彰(学術研究活動)
  • 2018/12 - The Japan Society of Mechanical Engineers Kansai Branch, The Japan Institute of Metals and Materials Kansai Branch 平成30年度鉄鋼プロセス研究会・材料化学研究会合同研究会 優秀発表賞
  • 2017/09 - Phase-Field Student Award
  • 2017/08 - 10th Pacific Rim International Conference on Modeling of Casting and Solidification Processes BEST POSTER PRESENTATION AWARD ”Influence of forced flow on the oriented equiaxed dendrititic growth: large-scale phase-field study”
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Association Membership(s) (5):
The Japan Society for Computational Engineering and Science ,  The Japan Institute of Metals and Materials ,  The Society of Materials Science, Japan ,  The Iron and Steel Institute of Japan ,  The Japan Society of Mechanical Engineers
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