Curriculum Vitaes
Profile Information
- Affiliation
- Professor, Faculty of Science and Technology, Department of Engineering and Applied Sciences, Sophia University
- Degree
- 修士(工学)(上智大学)博士(工学)(上智大学)
- Contact information
- suzu-tak
sophia.ac.jp - Researcher number
- 20206494
- ORCID ID
https://orcid.org/0009-0005-3718-248X- J-GLOBAL ID
- 200901066783722673
- researchmap Member ID
- 1000073265
(Subject of research)
The heat loss of internal combustion engine
Energy management for HEV system
(Proposed theme of joint or funded research)
The development of high efficiency S.I. engine
Research Interests
7Research Areas
1Awards
31Papers
117-
Journal of Engineering and Technological Sciences, 58(6) 745-761, Dec, 2026 Peer-reviewedLast author
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Wear, 605(15, 207037), Nov, 2026 Peer-reviewedLast author
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International Journal of Engine Research, Feb 6, 2026 Peer-reviewedLast author<jats:p>With the decarbonization of internal combustion engines, alternative fuels have gained increasing attention. When using fuels with low combustibility, such as ammonia, detailed analysis of the intake system and in-cylinder flow is essential for improving combustion efficiency. Proper orthogonal decomposition (POD) has been widely used to extract coherent structures in flow fields within internal combustion engines. However, most previous studies have focused on analyzing cycle-to-cycle variations in gasoline engines, while time-resolved analysis within a single cycle of diesel engines has rarely been conducted. In this study, the effect of tangential port opening on in-cylinder flow characteristics was investigated using an optical single-cylinder diesel engine equipped with two intake ports and two exhaust ports. The opening area of the tangential port was varied under five conditions using different gaskets, and in-cylinder velocities were measured using particle image velocimetry. POD was applied to the acquired velocity data to evaluate the flow structures of the higher modes and their correlations with the mean flow and turbulence intensity. The results showed that in POD mode 1, a swirl flow was formed during the compression stroke when the tangential port opening exceeded 25%. Evaluation of the correlation between POD mode 1 and the ensemble-averaged flow using the relevance index revealed a strong correlation during the compression stroke. In POD mode 2, complex flows were observed during the intake stroke, and structures different from the mean flow were also confirmed during the compression stroke. A moderate correlation was observed between POD mode 2 and turbulence intensity under all conditions. Energy contribution analysis indicated that in the early intake stroke, the variation in mode 1 was large, and the flows represented by mode 2 and higher modes were dominant, whereas in the late compression stroke, mode 1 consistently accounted for a higher proportion.</jats:p>
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Applied Thermal Engineering, 285(129019), Feb, 2026 Peer-reviewedLast authorCorresponding author
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Experimental Heat Transfer, Jan 22, 2026 Peer-reviewed
Misc.
14-
AIP Conference Proceedings, 2986(1), Feb, 2024 Peer-reviewedLast author
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Lecture Notes in Mechanical Engineering, 1051-1061, 2023 Peer-reviewedLast author
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自動車技術会大会学術講演会講演予稿集(Web), 2021, 2021
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Journal of Japan Society for Design Engineering, 46(10) 543-548, Oct, 2011 InvitedLead authorCorresponding author
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Journal of the Japan Society of Grinding Engineers, 54(6) 331-334, Jun, 2010 InvitedLead authorCorresponding author
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Engine technology, 9(2) 86-92, Apr, 2007 InvitedLead authorCorresponding author
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自動車技術, 58(10) 15-18, Oct, 2004 InvitedLead authorCorresponding author
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エンジンテクノロジー, May, 2004 InvitedLead authorCorresponding author
Books and Other Publications
3Presentations
249-
The 10th Japan-U.S. Digital Innovation Hub & Advanced Technology Workshop, Sep 8, 2026 Invited
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51st Leeds-Lyon Symposium on Tribology 2026, Sep 3, 2026
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41st International Symposium on Combustion, Jul 31, 2026, The Combustion Institute
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41st International Symposium on Combustion, Jul 31, 2026, The Combustion Institute
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41st International Symposium on Combustion, Jul 30, 2026, The Combustion Institute
Professional Memberships
4Research Projects
11-
2025 年度 理工学部申請型(応募制)研究費, 上智大学, Apr, 2025 - Mar, 2026
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日本学術振興会, Apr, 2019 - Mar, 2023
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上智大学学術研究特別推進費重点領域研究, 上智大学, Apr, 2019 - Mar, 2022
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自動車用内燃機関技術研究組合, Apr, 2019 - Mar, 2021
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日本学術振興会, Apr, 2017 - Mar, 2020