Updated on 2023/02/06

写真a

 
KATAOKA HIDEFUMI
 
Organization
Graduate School of Engineering Division of Mechanical Engineering Lecturer
School of Engineering Department of Mechanical Engineering
Title
Lecturer
Affiliation
Institute of Engineering

Position

  • Graduate School of Engineering Division of Mechanical Engineering 

    Lecturer  2022.04 - Now

  • School of Engineering Department of Mechanical Engineering 

    Lecturer  2022.04 - Now

Degree

  • 博士(工学) ( Yokohama National University )

  • 修士(工学) ( Yokohama National University )

Research Areas

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Thermal engineering

Research subject summary

  • 超希薄・高EGR燃焼における層流燃焼速度の計測

  • 混合燃料のデトネーション特性

  • レーザアブレーションを用いた直接起爆

  • 可燃性超音速流中におけるデトネーションの挙動

Research Career

  • 超希薄・高EGR燃焼における層流燃焼速度の計測

    Joint Research in Organization

    2011.10 - Now 

  • 1. Detonation properties of blended fuels

    detonaation, blended fuels 

  • direct initiation using laser abration

    detonation, lazer ablation 

  • behavior of detonation in the supersonic flow

    detonation, super sonic flow 

Professional Memberships

  • 自動車技術会

    2015 - Now   Domestic

  • 日本火薬学会

    2014 - Now   Domestic

  • 日本熱物性学会

    2010 - Now   Domestic

  • デトネーション研究会

    2009 - Now   Domestic

  • 日本機械学会

    2007 - Now   Domestic

  • 燃焼学会

    2006 - Now

  • 日本航空宇宙学会

    2006 - Now   Domestic

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Papers

  • A novel laminar flame speed equation for quasi-dimensional combustion model refinement in advanced, ultra-lean gasoline spark-ignited engines Reviewed International coauthorship

    Ratnak Sok, Hidefumi Kataoka, Jin Kusaka, Akira Miyoshi, Rolf D. Reitz

    Fuel   333   126508   2023.02

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    Publishing type:Research paper (scientific journal)   International / domestic magazine:International journal  

  • 高温壁面上におけるW/Oエマルション液滴の内部挙動および微粒化挙動に及ぼす界面活性剤濃度の影響 Reviewed

    山田圭祐,片岡秀文,瀬川大資

    日本燃焼学会誌 雑誌   60 ( 194 )   278 - 285   2018.11

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    Kind of work:Joint Work  

  • 収束デトネーションにより駆動される水中衝撃波を用いた海洋微生物処理 Reviewed

    石井一洋, 伊藤響平,渡辺菜月,片岡秀文

    日本機械学会論文集 雑誌   84 ( 867 )   2018.10

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    Kind of work:Joint Work  

  • Mechanism of detonation transition from accelerating flames in a channel Reviewed

    S. Ishihara, K. Ishii, H. Kataoka

    Proceedings of the Combustion Institute 雑誌   36 ( 2 )   2753 - 2759   2017.02

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    Kind of work:Joint Work  

  • Effects of Boundary Layer on Flame Propagation Generated by Forced Ignition behind an Incident Shock Wave Reviewed

    S. Ishihara, S. Tamura, K. Ishii, H. Kataoka

    Shock waves 雑誌   26 ( 5 )   599 - 609   2016.09

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    Kind of work:Joint Work  

  • Critical Energy for Direct Initiation of Detonation Induced by Laser Ablation Reviewed

    S. Ishihara, K. Suzuki, T. Inoue, K. Ishii, and H. kataoka

    Shock waves 雑誌   26 ( 5 )   635 - 643   2016.09

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    Kind of work:Joint Work  

  • Effects of target position on direct initiation of detonation using laser ablation Reviewed

    Hidefumi KATAOKA, Hiroyuki KATO, Keitaro SUZUKI, Sakiko ISHIHARA, Kazuhiro ISHII, Daisuke SEGAWA

    Transactions of JSASS 雑誌   58 ( 6 )   313 - 318   2015.11

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    Kind of work:Joint Work  

  • 高温壁面上におけるO/WおよびW/Oエマルション燃料液滴の微粒化挙動の比較 Reviewed

    山田圭祐,片岡秀文,瀬川大資,角田敏一

    日本燃焼学会誌 雑誌   57 ( 182 )   299 - 306   2015.11

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    Kind of work:Joint Work  

  • Comparison of the Flame Spreading Behavior of Oil-in-water and Water-in-oil Emulsions along Linear Emulsion Droplet Arrays in a Microgravity Environment Reviewed

    K. Yamada, H. Kataoka, T. Kagami, Y. Unno, D. Segawa, T. Kadota

    Atomization and Sprays 雑誌   25 ( 10 )   917 - 931   2015.08

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    Kind of work:Joint Work  

  • Autoignition Behavior of a Spherical Cluster consisted of a Center Fine Droplet and Surrounding Twelve Fine Droplets Reviewed

    H. Kataoka, H. Yamashita, J. Tada, Y, Oka, Y. Morinaga, M. Itai, D. SEGAWA, T. Kadota

    Proceedings of the Combustion Institute 雑誌   35 ( 2 )   2015.01

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    Kind of work:Joint Work  

  • 入射衝撃波背後での壁面強制点火により生じるデフラグレーションからデトネーションへの遷移過程 Reviewed

    石原咲子,石井一洋,片岡秀文

    日本燃焼学会誌 雑誌   56 ( 178 )   2014.11

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    Kind of work:Joint Work  

  • 微速空気流中におけるエマルション液滴列の燃拡がり Reviewed

    山田圭祐,田中創,片岡秀文,中谷辰爾,瀬川大資,角田敏一

    日本機械学会論文集 B編 日本機械学会   79 ( 802 )   1176 - 1184   2013.06

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    Kind of work:Joint Work  

  • Cellular pattern formation in detonation propagation Reviewed

    K. Ishii, K. Morita, Y. Okitsu, S. Sayama, H. Kataoka

    Proceedings of the Combustion Institute Combustion Institute   34 ( 2 )   1903 - 1911   2013.01

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    Kind of work:Joint Work  

  • デトネーション伝播時のセル模様に関する研究 Reviewed

    石井一洋,森田孝治,沖津裕太,片岡秀文

    日本燃焼学会誌 燃焼学会   54 ( 167 )   33 - 40   2012.02

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    Kind of work:Joint Work  

  • 可燃性超音速流中でのデトネーションの伝播 Reviewed

    片岡秀文,石井一洋

    日本燃焼学会誌 雑誌 日本燃焼学会   51 ( 155 )   71 - 79   2009.02

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    Kind of work:Joint Work  

  • Initiation and propagation of detonation waves in combustible high speed flows Reviewed

    K. ISHII, H. KATAOKA, T. KOJIMA

    Proceedings of the Combustion Institute 雑誌 Combustion Institute   32 ( 2 )   2323 - 2330   2009.01

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    Kind of work:Joint Work  

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Outline of collaborative research (seeds)

  • 層流燃焼速度計測

  • デトネーション計測

Charge of on-campus class subject

  • Manufacturing Process Laboratory

    2021   Practical Training  

  • Introduction to Mechanical, Aerospace and Marine-System EngineeringI

    2021    

  • Manufacturing Process Laboratory

    2021   Practical Training  

  • Laboratory in Mechanical Engineering II

    2021   Practical Training  

  • Laboratory in Mechanical Engineering I

    2021   Practical Training  

  • Exercises in Mechanical Engineering II

    2021    

  • Exercises in Mechanical Engineering I

    2021    

  • Internal Combustion Engines

    2021    

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Visiting Lectures ⇒ Link to the list of Visiting Lectures

  • 微小重力環境を用いた燃焼速度計測について

    Category:Modern system science (knowledge information system, environmental system, educational welfare, psychology), Engineering (machinery, electronics / physics, electrical / electronics, electrical information, chemical biotechnology, architecture, cities (civil engineering / environment), material chemistry, aerospace, marine systems, applied chemistry, chemistry, materials)

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    Audience:Junior high school students, High school students, College students, Teachers, Researchers, General, Company, Civic organization