Profile Information
- Affiliation
- Associate Professor, Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
- Degree
- Ph. D.(The University of Tokyo)
- J-GLOBAL ID
- 200901010820608589
- researchmap Member ID
- 0000010945
Research Interests
5Research Areas
3Research History
5-
2018 - Mar, 2024
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Apr, 2019 - Mar, 2022
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2015 - 2018
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Apr, 2003 - Mar, 2016
Education
4Committee Memberships
28-
2020 - Present
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2017 - Present
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Apr, 2022 - Mar, 2024
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2021 - Mar, 2023
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May, 2020 - May, 2022
Papers
39-
AEROSPACE TECHNOLOGY JAPAN, THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 22 79-93, Aug, 2023 Peer-reviewedLead authorLast authorCorresponding author
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AIAA Journal, 61(8) 3466-3484, Jul, 2023 Peer-reviewedThis study presents a fully automated Cartesian-grid-based compressible flow solver, named FrontFlow/Violet Hierarchical Cartesian for Aeronautics based on Compressible-flow Equations (FFVHC-ACE), for large-eddy simulation (LES) and its aeronautical applications. FFVHC-ACE enables high-fidelity LES of high-Reynolds-number flows around complex geometries by adopting three key numerical methods: hierarchical Cartesian grids, wall modeling in LES, and the kinetic-energy and entropy preserving (KEEP) scheme. The hierarchical Cartesian grids allow fully automated grid generation for complex geometries in FFVHC-ACE, and high-fidelity LES of high-Reynolds-number flows around complex geometries is realized by the wall modeling and the KEEP scheme on the non-body-fitted hierarchical Cartesian grids. We apply FFVHC-ACE to wall-modeled LES around high-lift aircraft configurations at wind-tunnel-scale Reynolds number [Formula: see text] and real-flight Reynolds number [Formula: see text], demonstrating the capability of FFVHC-ACE for fully automated grid generation and high-fidelity simulations around complex aircraft configurations. The computed flowfield and aerodynamic forces at the wind-tunnel-scale Reynolds number agree well with the experimental data provided in the past AIAA High Lift Prediction Workshop (Rumsey et al., Journal of Aircraft, Vol. 56, No. 2, 2019, pp. 621–644). Furthermore, the wall-modeled LES at the real-flight Reynolds number shows good agreement of the lift coefficient with flight-test data.
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AIAA SCITECH 2023 Forum, Jan 19, 2023
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AIP ADVANCES, 12(10), Oct, 2022 Peer-reviewedElectrohydrodynamic (EHD) thrusters can silently propel small unmanned aerial vehicles without moving parts using corona discharges. Computational fluid dynamics would be a powerful tool to model the EHD thrusters and then optimize them. The drift-diffusion-Poisson equations govern corona discharges; hence, the equations can predict the current-voltage characteristics curves of EHD thrusters. However, the equations are too stiff to analyze EHD thrusters in the time domain. Here, we propose a perturbation technique to efficiently solve the stiff drift-diffusion-Poisson system in global (i.e., full two-dimensional or three-dimensional) and nonlinear (i.e., applied voltages higher than the corona inception voltage) regimes. Furthermore, we validated the method with the experimental results of a previous study. (C) 2022 Author(s).All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY)license (http://creativecommons.org/licenses/by/4.0/).
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AIAA AVIATION 2022 Forum, Jun 27, 2022
Misc.
65-
Proceedings of the 4th Workshop on Cartesian Grid-based CFD, JAXA-SP-23-008, 73-84, Jan, 2024 Lead authorLast authorCorresponding author
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JAXA Special Publication: Proceedings of the 3rd Workshop on Cartesian Grid-based CFD, JAXA-SP-22-008 77-82, Feb 3, 2023 Lead authorLast authorCorresponding author
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JAXA Special Publication: Proceedings of the 2nd Workshop on Cartesian Grid-based CFD, JAXA-SP-21-009 115-124, Feb 15, 2022 Lead authorLast authorCorresponding author
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JAXA Special Publication: Proceedings of the 53rd Fluid Dynamics Conference / the 39th Aerospace Numerical Simulation Symposium, JAXA-SP-21-008 217-223, Feb 14, 2022 Lead authorLast authorCorresponding author
Presentations
96-
第54回流体力学講演会/第40回航空宇宙数値シミュレーション技術シンポジウム 「航空宇宙CFDの進化に必要なソフト・ハードとは?」, Jun 30, 2022 Invited
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The 23rd Workshop on Sustained Simulation Performance, Mar 16, 2016 Invited
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5th International Industrial Supercomputing Workshop, Oct 2, 2014 Invited
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47th AIAA Aerospace Sciences Meeting and Exhibit, 2009
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47th AIAA Aerospace Sciences Meeting and Exhibit, 2009
Teaching Experience
2-
Apr, 2004 - PresentComputational engineering and science (The Graduate University for Advanced Studies)
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Apr, 2003 - Mar, 2016Compressible fluid dynamics (Kogakuin University)
Professional Memberships
6Research Projects
6-
「富岳」成果創出加速プログラム, 文部科学省, Apr, 2023 - Mar, 2026
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「富岳」成果創出加速プログラム, 文部科学省, Apr, 2020 - Mar, 2023
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「ポスト「京」で重点的に取り組むべき社会的・科学的課題に関するアプリケーション開発・研究開発」(重点課題8 )近未来型ものづくりを先導する革新的設計・製造プロセスの開発, 文部科学省, 2015 - 2020
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高性能汎用計算機高度利用事業 HPCI戦略プログラム」(分野4 次世代ものづくり), 文部科学省, 2010 - 2016
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Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (C), Japan Society for the Promotion of Science, 2007 - 2008
● 指導学生等の数
2-
Fiscal Year2021年度(FY2021)Doctoral program総研大1名Students under Commissioned Guidance Student System2名
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Fiscal Year2020年度(FY2020)Doctoral program総研大1名Students under Commissioned Guidance Student System2名
● 専任大学名
1-
Affiliation (university)総合研究大学院大学(SOKENDAI)
● 所属する所内委員会
2-
ISAS CommitteeISAS news editorial board
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ISAS Committee大学院教育委員会