Updated on 2024/03/21

写真a

 
MIZUTA Kei
 
Organization
Research Field in Engineering, Science and Engineering Area Graduate School of Science and Engineering (Engineering) Department of Engineering Chemical Engineering Program Associate Professor
Title
Associate Professor
External link

Degree

  • 博士(工学) ( 2017.9   九州大学 )

  • 修士(工学) ( 1998.3   京都大学 )

  • 工学士 ( 1996.3   京都大学 )

Research Interests

  • Vpor Chamber

  • FGHP

  • Image Processing

  • PIV

  • LIF

  • cooling system

Research Areas

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Thermal engineering  / Heat Transfer, Vapor Chamber

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Transport phenomena and unit operations  / Transport Phenomena

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Measurement engineering  / Visualization Technology, Laser Induced Fluorescence

Education

  • Kyoto University   Engineering   Chemical Engineering

    1998.4 - 2001.3

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    Country: Japan

  • Kyoto University   Engineering   Chemical Engineering

    1992.4 - 1996.3

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    Country: Japan

Research History

  • Kagoshima University   Faculty of Engineering   Associate Professor

    2023.4

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    Country:Japan

  • Kagoshima University   Associate Professor

    2023.4

  • Kagoshima University   Research Field in Engineering, Science and Engineering Area Graduate School of Science and Engineering (Engineering) Department of Engineering Chemical Engineering Program   Assistant Professor

    2020.4

  • Kagoshima University

    2001.4

  • Kagoshima University   Research Field in Engineering, Science and Engineering Area Graduate School of Science and Engineering (Engineering) Chemistry, Biotechnology, and Chemical Engineering Course   Assistant Professor

    2001.4 - 2020.3

Professional Memberships

  • 化学工学会

    2015.10

  • 可視化情報学会

    2015.10

  • 伝熱学会

    2015.10

Committee Memberships

  • SIIQ企画運営委員会   企画運営委員  

    2019.7   

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    Committee type:Other

    九州半導体・エレクトロニクスイノベーション協議会

  • SIIQイノベーション創出部会   部会長  

    2016.7 - 2019.6   

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    Committee type:Other

    九州半導体・エレクトロニクスイノベーション協議会

 

Papers

  • Mikiro HIRAYAMA, Takashi GOSHIMA, Kei MIZUTA, Susumu NII .  Evaluation of Mass-transfer Performance of Emulsion-flow Column with height of transfer unit, HTU and number of theoretical plates, and Comparison of HTU with Column-type Extractors .  Analytical Sciences37 ( 6 ) 859 - 864   2021.6Evaluation of Mass-transfer Performance of Emulsion-flow Column with height of transfer unit, HTU and number of theoretical plates, and Comparison of HTU with Column-type ExtractorsReviewed

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: https://doi.org/10.2116/analsci.20P320

  • Mikiro HIRAYAMA, Takashi GOSHIMA, Kei MIZUTA, Susumu NII .  Axial Mixing in Emulsion-flow Column under Iodine Extraction .  Solvent Extraction Research and Development, Japan28 ( 1 ) 11 - 19   2021.6Axial Mixing in Emulsion-flow Column under Iodine Extraction

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: https://doi.org/10.15261/serdj.28.11

  • HIRAYAMA Mikiro, GOSHIMA Takashi, MIZUTA Kei, NII Susumu .  Quantification of Iodine Mass Transfer and Height of Emulsion Phase in "Emulsion-flow" Column .  Solvent Extraction Research and Development, Japan27 ( 2 ) 125 - 133   2020Reviewed International coauthorship International journal

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:日本溶媒抽出学会  

    <p>"Emulsion-flow" is a unique regime of counter-current contact between aqueous and organic phases in a column extractor. The operation enables fast mass transfer as well as stable dropwise counter-current of both phases in a simple column-type apparatus. While those advantages have been reported, prediction of the column performance has been difficult because of the lack of correlation with mass transfer coefficient and interfacial area. This study suggests correlation with overall aqueous phase mass transfer capacity coefficient, <i>K</i><sub>w</sub><i>a</i> and the height of emulsion phase, <i>H</i> for various operating conditions. In iodine extraction, velocity of organic phase had a stronger effect on <i>H</i>. Furthermore <i>K</i><sub>w</sub><i>a</i> was correlated with a root of <i>H</i>. This fact suggests that the velocity of the organic phase plays a major role in mass transfer for the case of emulsion-flow. Correlations suggested in the present study are important for rational design and scaling up of emulsion-flow columns.</p>

    DOI: 10.15261/serdj.27.125

    Scopus

  • HIRAYAMA Mikiro, GOSHIMA Takashi, MIZUTA Kei, NII Susumu .  Evaluation of Mass-transfer Performance of Emulsion-flow Column with Height of Transfer Unit, HTU and Number of Theoretical Plates, and Comparison of HTU with Column-type Extractors .  Analytical Sciences   2020Reviewed International coauthorship International journal

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:社団法人 日本分析化学会  

    DOI: 10.2116/analsci.20P320

    PubMed

  • K. Mizuta,R. Fukunaga,K. Fukuda,T. Nishino,T. Goshima,S. Nii,T. Asano .  Quasi one-dimensional approach to evaluate temperature dependent anisotropic thermal conductivity of a flat laminate vapor chamber .  Applied Thermal Engineering146 ( 5 ) 843 - 853   2019.1Invited Reviewed International journal

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    Authorship:Lead author, Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)   Publisher:Applied Thermal Engineering  

    DOI: 10.1016/j.applthermaleng.2018.10.057

    Scopus

  • Mizuta Kei, Nishino Takumi, Nii Susumu, Goshima Takashi, Watanabe Daisuke, Nagatani Yusuke, Takagi Masakuni, Asano Tanemasa .  Extension of the Scope of Evaluation Method of Anisotropic Thermal Conductivity to Resin Materials of Higher Thermal Conductivity .  The Proceedings of the Thermal Engineering Conference2018 ( 0 )   2018

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Research paper (other academic)   Publisher:The Japan Society of Mechanical Engineers  

    <p>Our newly developed scheme to evaluate anisotropic thermal conductivity has been extended its scope to include resin materials of higher thermal conductivity. In our previous work, heat input to a test sample was evaluated with an assumption that the temperature profile inside the heating block was sufficiently linear, which is no longer adequate for the resin materials because of its higher thermal resistance. To cope with such situation, we have re-defined thermal equivalent circuit to include the effects occurring inside the heating block in addition to those of the test sample. The results show that thermal equivalent circuit was adequate to evaluate the effects, which suggest that our model can be applied to the resin materials.</p>

    DOI: 10.1299/jsmeted.2018.0213

  • 水田 敬 .  高い異方性熱伝導をもつ熱拡散板の性能モデルと電 子デバイス実装への応用に関する研究 .      2017.9Reviewed

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Doctoral thesis  

  • Kei Mizuta, Rinkoh Fukunaga, Kenji Fukuda, Susumu Nii, Tanemasa Asano .  Development and characterization of a flat laminate vapor chamber .  Applied Thermal Engineering104   461 - 471   2016.7Invited Reviewed

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    Other Link: http://163.209.138.150/~tansou/HTML_src/html/nl_research2.html

  • Kei Mizuta, Yasushi Saito, Takashi Goshima, Toshio Tsutsui .  Measurement of Coolant in a Flat Heat Pipe Using Neutron Radiography .  Physics Procedia69   556 - 563   2015.6Invited Reviewed International coauthorship

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    Authorship:Lead author, Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    Other Link: http://163.209.138.150/~tansou/HTML_src/html/nl_research2.html

  • Kei Mizuta, Yuka Odo, Shiho Yoshimitsu, Hitoshi Kaji, Miwako Murakami and Toshitatsu Matsumoto .  Transient Behavior during a Gas Dissolution Process around a Stationary Single Bubble .  Journal of Chemical Engineering of Japan41 ( 7 ) 553 - 556   2008.12Transient Behavior during a Gas Dissolution Process around a Stationary Single BubbleReviewed

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    Authorship:Lead author, Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  • K.Mizuta, T.Matsumoto, Y.Hatate, K.Nishihara, T.Nakanishi .  Removal of nitrate-nitrogen from drinking water using bamboo powder charcoal .  Bioresource Technology95   255 - 257   2004.12Removal of nitrate-nitrogen from drinking water using bamboo powder charcoalReviewed

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    Authorship:Lead author, Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: https://doi.org/10.1016/j.biortech.2004.02.015

  • HIRAYAMA Mikiro, GOSHIMA Takashi, MIZUTA Kei, NII Susumu .  Axial Mixing in Emulsion-flow Column under Iodine Extraction .  Solvent Extraction Research and Development, Japan28 ( 1 ) 11 - 19   2021

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    Language:English   Publisher:Japan Association of Solvent Extraction  

    <p>Strength of axial mixing in the emulsion phase during the progress of extraction was evaluated using the Peclet number under various flow conditions. The Peclet numbers were determined with the established tracer technology which applies inert species for iodine extraction. Very little effect of operating velocities of either aqueous and organic phases was found on the Peclet numbers. This fact indicates that an almost constant degree of axial mixing was kept in this column for different flow velocities of both phases. Furthermore, the degree of axial mixing of the emulsion-flow column was compared with conventional spray and packed columns by plotting the droplet Peclet number against the droplet Reynolds number. Points of the Peclet numbers of emulsion-flow column located in the middle of the spray and the packed columns, which suggests that the strength of axial mixing in the present column is in between spray and packed columns. </p>

    DOI: 10.15261/serdj.28.11

    Scopus

  • Goshima T. .  Conversion of jatropha oil into lower olefins over zeolite catalysts in the presence of water .  Energy Sources, Part A: Recovery, Utilization and Environmental Effects40 ( 20 ) 2400 - 2406   2018.10Reviewed International journal

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Energy Sources, Part A: Recovery, Utilization and Environmental Effects  

    DOI: 10.1080/15567036.2018.1496194

    Scopus

  • Goshima T. .  Feasibility of zeolites in converting butyric acid into propylene for biorefineries .  Energy Sources, Part A: Recovery, Utilization and Environmental Effects40 ( 3 ) 306 - 311   2018.2Reviewed International journal

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Energy Sources, Part A: Recovery, Utilization and Environmental Effects  

    DOI: 10.1080/15567036.2017.1415396

    Scopus

  • Goshima Takashi, Sudo Chihiro, Tanaka Hideshi, Mizuta Kei, Nii Susumu .  Conditions for Acid Fermentation of Molasses for Effective Production of Propylene from Biomass .  KAGAKU KOGAKU RONBUNSHU44 ( 4 ) 278 - 283   2018Reviewed

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    Language:Japanese   Publishing type:Research paper (scientific journal)   Publisher:The Society of Chemical Engineers, Japan  

    <p>Biomass resources have attracted attention because they are renewable and can be converted into feedstock for producing valuable chemicals such as olefins and aromatics. The present study proposes a two-step operation for producing bio-oils or chemicals from biomass to improve the quality of product and catalyst life. The first step is fermentative production of oxygen-containing compounds such as butyric acid from molasses as biomass. In the second step, the product is converted catalytically to propylene. The feasibility of the two-step process depends on the fermentation step. To realize the efficient acid fermentation, conditions were studied for producing butyric acid in high selectivity in a short period. Under our optimized conditions, selectivity was improved from 25.4 to 73.5 C% and the fermentation period was shortened from 13.5 to 1.5 d. Catalytic conversion of the fermentation product over zeolite gave a propylene yield of 25 C%. The results clearly show feasibility of the two-step processes for propylene production from molasses.</p>

    DOI: 10.1252/kakoronbunshu.44.278

    Scopus

  • Goshima T. .  Experimental Investigation on Gas-Solid Behavior in Fluidized Beds with Superfine Particles .  Chemical Engineering and Technology40 ( 12 ) 2295 - 2304   2017.12Reviewed International journal

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Chemical Engineering and Technology  

    DOI: 10.1002/ceat.201600542

    Scopus

  • Takami Kai, Norihiro Tanaka, Kei Mizuta, Tsutomu Nakazato, Mitsuyuki Nakajima .  Pressure fluctuation analysis of the defluidization caused by a reaction involving gas-volume reduction in a fluidized catalyst bed .  Journal of Chemical Engineering of Japan48 ( 6 ) 436 - 443   2015.6Pressure fluctuation analysis of the defluidization caused by a reaction involving gas-volume reduction in a fluidized catalyst bedReviewed

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  • Takami Kai, Yuki Hirano, Tsutomu Nakazato, Kei Mizuta .  Mechanism of the initial phenomena of defluidization caused by switching fluidizing gases .  Journal of Chemical Engineering of Japan47 ( 3 ) 241 - 247   2014.4Mechanism of the initial phenomena of defluidization caused by switching fluidizing gasesReviewed

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  • 甲斐敬美,水田敬,平野裕貴,中里勉 .  エマルション相と気泡相間の非等モル拡散の数学モデル .  第19回流動化・粒子プロセッシングシンポジウム講演論文集   30 - 33   2013.11エマルション相と気泡相間の非等モル拡散の数学モデル

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    Language:Japanese   Publishing type:Research paper (scientific journal)  

  • 平野裕貴,甲斐敬美,中里勉,水田敬 .  流動化ガスの切換えに起因する非流動化の発端となる現象のメカニズム .  第19回流動化・粒子プロセッシングシンポジウム講演論文集   124 - 127   2013.11流動化ガスの切換えに起因する非流動化の発端となる現象のメカニズム

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    Language:Japanese   Publishing type:Research paper (scientific journal)  

  • Shimada, N; Saiki, R; Dhar, A; Mizuta, K; Tomiyama, A .  Liquid Mixing in a Bubble Column .  Journal of Chemical Engineering of Japan45 ( 9 ) 632 - 638   2012.9Liquid Mixing in a Bubble ColumnReviewed

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    Language:English   Publishing type:Research paper (scientific journal)  

  • Takami Kai, Mitsunobu Furukawa, Tsutomu Nakazato, Toshio Tsutsui, Kei Mizuta .  Analysis of Fluidization Quality of a Fluidized Bed with Staged Gas Feed for Reactions Involving Gas-Volume Reduction .  AIChE Journal56 ( 9 ) 2297 - 2303   2010.9Analysis of Fluidization Quality of a Fluidized Bed with Staged Gas Feed for Reactions Involving Gas-Volume ReductionReviewed

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Presentations

  • 甲斐 敬美,平野 裕貴,中里 勉,水田 敬   流動化ガス切り換えによって引き起こされる非流動化現象のメカニズム,S117  

    化学工学会第47回秋季大会 

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    Event date: 2015.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:札幌  

  • 甲斐 敬美,田中 啓寛,中里 勉,水田 敬,中島 充幸   体積減少を伴う反応を流動触媒層で行う場合の流動性制御,S115  

    化学工学会第47回秋季大会 

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    Event date: 2015.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:札幌  

  • Norihiro Tanaka, Takami Kai, Kei Mizuta, Tsutomu Nakazato, Mitsuyuki Nakajima   Application of wavelet transform for analysis of defluidization caused by the reaction involving gas-volume reduction   International conference

    The 27th International Symposium on Chemical Engineering, OE-03, Kuala Lumpur  The 27th International Symposium on Chemical Engineering, OE-03, Kuala Lumpur

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    Event date: 2014.12

    Language:English  

    Venue:マレーシア  

    国際学会

  • 隈元悠希、水田 敬、五島 崇、筒井俊雄   ゼオライトを用いたバイオマス由来有用物質の分離・濃縮に関する研究  

    化学工学会第46回秋季大会  化学工学会第46回秋季大会

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    Event date: 2014.9

    Language:Japanese  

    Venue:福岡  

    国内学会

  • 水田 敬、齊藤泰司、五島 崇、筒井俊雄   フラットヒートパイプ型ヒートスプレッダの伝熱特性評価法に関する研究  

    化学工学会第46回秋季大会  化学工学会第46回秋季大会

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    Event date: 2014.9

    Language:Japanese  

    Venue:福岡  

    国内学会

  • K. Mizuta, S. Saito, T. Goshima, T. Tsutsui   Evaluation of coolant distribution in flat heat pipe using neutron radiography   International conference

    2nd International Symposium on Multiscale Multiphase Process Engineering, Hamburg, 24-27 September, 2014  2nd International Symposium on Multiscale Multiphase Process Engineering, Hamburg, 24-27 September, 2014

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    Event date: 2014.9

    Language:English  

    Venue:ハンブルク(ドイツ)  

    国際学会

  • 田中啓寛,甲斐敬美,水田敬,中里勉   流動触媒層反応器における非流動化発生時の圧力変動特性  

    化学工学会第46回秋季大会,B108,福岡  化学工学会第46回秋季大会,B108,福岡

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    Event date: 2014.9

    Language:Japanese  

    Venue:福岡  

    国内学会

  • 田中啓寛,甲斐敬美,水田敬,中里勉   流動触媒層反応器での非流動化発生時の圧力信号のウェーブレット解析  

    第51回化学関連支部合同九州大会, CE-2-021, p.46  第51回化学関連支部合同九州大会, CE-2-021, p.46

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    Event date: 2014.6

    Language:Japanese  

    Venue:福岡  

    国内学会

  • 平野裕貴,甲斐敬美,中里勉,水田敬   流動化ガスの切換えに起因する非流動化の発端となる現象のメカニズム  

    第19回流動化・粒子プロセッシングシンポジウム  第19回流動化・粒子プロセッシングシンポジウム

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    Event date: 2013.11

    Language:Japanese  

    Venue:群馬  

    国内学会

  • 甲斐敬美,水田敬,平野裕貴,中里勉   エマルション相と気泡相間の非等モル拡散の数学モデル  

    第19回流動化・粒子プロセッシングシンポジウム  第19回流動化・粒子プロセッシングシンポジウム

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    Event date: 2013.11

    Language:Japanese  

    Venue:群馬  

    国内学会

  • Takami Kai, Yuki Hirano, Tsutomu Nakazato, Kei Mizuta   Mechanism of Whole Bed Defluidization Caused by Minor Difference in Gas Diffusion Rates  

    Kyusyu Seminar 2013, Kyushu Branchh, Soc. Chem. Engrs., KB-6, pp.217-218, Kumamoto  Kyusyu Seminar 2013, Kyushu Branchh, Soc. Chem. Engrs., KB-6, pp.217-218, Kumamoto

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    Event date: 2013.11

    Language:Japanese  

    Venue:熊本  

    国内学会

  • 水田敬、唐仁原孝史、島田直樹、筒井俊雄   単一のカラーカメラを用いた二色LIF法によるスカラー計測手法について  

    可視化情報学会全国講演会2012  可視化情報学会全国講演会2012

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    Event date: 2012.10

    Language:Japanese  

    Venue:兵庫  

    国内学会

  • 水田敬、唐仁原孝史、筒井俊雄   模擬気泡を用いた混相系輸送特性に関する研究  

    化学工学会第44回秋季大会  化学工学会第44回秋季大会

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    Event date: 2012.9

    Language:Japanese  

    Venue:宮城  

    国内学会

  • 水田敬、近藤亜希子、東川智希、筒井俊雄   小型・高輝度LED水中灯における放熱システムの開発  

    化学工学会第44回秋季大会  化学工学会第44回秋季大会

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    Event date: 2012.9

    Language:Japanese  

    Venue:宮城  

    国内学会

  • 水田敬、唐仁原孝史、筒井俊雄   模擬気泡を用いた混相系輸送特性の解明に向けた基礎検討  

    分離技術会年会2012  分離技術会年会2012

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    Event date: 2012.6

    Language:Japanese  

    Venue:大阪  

    国内学会

  • 水田敬、渡邊雄三、島田直樹   Temperature measurement technique with single high-speed camera   International conference

    1st International Symposium on Multiscale Multiphase Process Engineering(MMPE)  1st International Symposium on Multiscale Multiphase Process Engineering(MMPE)

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    Event date: 2011.10

    Language:English  

    Venue:石川  

    国際学会

  • 水田 敬、唐仁原 孝史、筒井 俊雄   二色LIF法を用いた混相系における温度計測について  

    化学工学会第43回秋季大会  化学工学会第43回秋季大会

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    Event date: 2011.9

    Language:Japanese  

    Venue:愛知  

    国内学会

  • 水田敬   一台のカラーカメラを用いた二色レーザー誘起蛍光法による非接触二次元スカラー計測について  

    2010機械学会年次大会  2010機械学会年次大会

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    Event date: 2010.9

    Language:Japanese  

    Venue:愛知  

    国内学会

  • 水田敬、福永倫康、筒井俊雄   フラットヒートパイプ型ヒートスプレッダの熱伝達特性について  

    第47回伝熱シンポジウム  第47回伝熱シンポジウム

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    Event date: 2010.5

    Language:Japanese  

    Venue:北海道  

    国内学会

  • 小田原雄己、水田敬   静止流体中を上昇する単一気泡の溶解現象について  

    化学工学会第75年会  化学工学会第75年会

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    Event date: 2010.3

    Language:Japanese  

    Venue:鹿児島  

    国内学会

  • 中野麻利、水田敬   温度応答性クロマトグラフによる分離特性シミュレーション  

    化学工学会第75年会  化学工学会第75年会

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    Event date: 2010.3

    Language:Japanese  

    Venue:鹿児島  

    国内学会

  • 小田原雄己、水田敬   アルゴンイオンレーザーを用いた二色LIF法について  

    化学工学会第41回秋季大会  化学工学会第41回秋季大会

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    Event date: 2009.9

    Language:Japanese  

    Venue:広島  

    国内学会

  • 水田敬、福永倫康   高性能ヒートパイプ型ヒートスプレッダ(FGHP)を用いた冷却システムの開発  

    化学工学会第41回秋季大会  化学工学会第41回秋季大会

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    Event date: 2009.9

    Language:Japanese  

    Venue:広島  

    国内学会

  • 水田 敬、尾堂 由佳、吉満 志帆、加治 仁、村上 実和子、松本 利達   Characteristics of gas dissolution process around a single bubble   International conference

    10TH Asian Conference on Fluidized-Bed and Three-Phase Reactors November 26-29, 2006, Marriott Hotel, Busan, Korea, A1-2  10TH Asian Conference on Fluidized-Bed and Three-Phase Reactors November 26-29, 2006, Marriott Hotel, Busan, Korea, A1-2

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    Event date: 2006.9

    Language:English  

    Venue:ヘウンデ、韓国  

    国際学会

  • 水田 敬、松本利達、吉満志帆、村上実和子   単一気泡からのガス吸収過程における物質移動特性について  

    化学工学会 第37回秋季大会講演要旨集 (2006), E107  化学工学会 第37回秋季大会講演要旨集 (2006), E107

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    Event date: 2006.9

    Language:Japanese  

    国内学会

  • 水田 敬、尾堂 由佳、吉満 志帆、加治 仁、松本 利達   Two-color Laser Induced Fluorescence Technique for pH Distribution Measurement Using a Single Full-color Video Camera   International conference

    12th International Symposium on Flow Visualization G〓ttingen, Germany, September 10 -14, 2006, ISFV12-80.2  12th International Symposium on Flow Visualization G〓ttingen, Germany, September 10 -14, 2006, ISFV12-80.2

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    Event date: 2006.9

    Language:English  

    Venue:ゲッチンゲン、ドイツ  

    国際学会

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Intellectual Property

  • METHOD FOR PREPARING REFRIGERANT, AND REFRIGERANT

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    Application no:JP2023/014858  Date applied:2023.4

    Announcement no:WO-A-2023/199944  Date announced:2023.10

    Country of applicant:International (PCT) application  

  • ベーパチャンバ

    水田 敬、福田 賢司

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    Applicant:国立大学法人 鹿児島大学、四国計測工業株式会社

    Application no:特願2020-1086  Date applied:2020.1

    Announcement no:特開2021-110482  Date announced:2021.8

    Patent/Registration no:特許第7448136号  Date registered:2024.3  Date issued:2024.3

    Country of applicant:Domestic   Country of acquisition:Domestic

  • コアレッサ及び油水分離装置

    水口 善文、下小牧 伸一、二井 晋、水田 敬

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    Applicant:アサダメッシュ株式会社、国立大学法人 鹿児島大学

    Application no:特願2019-115271  Date applied:2019.6

    Announcement no:特開2021-000602  Date announced:2021.1

    Patent/Registration no:特許第6956978号  Date registered:2021.10  Date issued:2021.11

    Rights holder:アサダメッシュ株式会社、国立大学法人 鹿児島大学   Country of applicant:Domestic   Country of acquisition:Domestic

  • ヒートパイプ

    水田 敬、福田 賢司

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    Applicant:国立大学法人 鹿児島大学、四国計測工業株式会社

    Application no:特願2017-246103  Date applied:2017.12

    Announcement no:特開2019-113232  Date announced:2019.7

    Patent/Registration no:特許第7386469  Date registered:2023.11  Date issued:2023.11

    Country of applicant:Domestic   Country of acquisition:Domestic

  • 集熱・発電システム

    水田 敬、亘 大樹、臼木 宏任

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    Applicant:富士エネルギー株式会社、国立大学法人 鹿児島大学

    Application no:特願2016-043111  Date applied:2016.3

    Announcement no:特開2017-161092  Date announced:2017.9

    Patent/Registration no:特許第6755489号  Date registered:2020.8  Date issued:2020.9

    Rights holder:富士エネルギー株式会社、国立大学法人 鹿児島大学

  • 電子部品実装基板の放熱設計方法およびプログラム

    水田 敬, 福田 賢司

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    Application no:特願2015-118280  Date applied:2015.6

    Announcement no:特開2017-005135  Date announced:2017.1

    Patent/Registration no:特許第6539862号  Date registered:2019.6  Date issued:2019.7

    Country of applicant:Domestic  

  • ヒートシンク

    水田 敬,福田 賢司

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    Application no:2014-6254  Date applied:2014.1

    Announcement no:2015-135876  Date announced:2015.7

    Patent/Registration no:特許第6372845号  Date registered:2018.7  Date issued:2018.8

    Country of applicant:Domestic  

  • ヒートシンク

    水田 敬

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    Application no:2014-518752  Date applied:2013.5

    Announcement no:WO2013/180270  Date announced:2013.12

    Patent/Registration no:特許第6128563号  Date registered:2017.4  Date issued:2017.5

    Country of applicant:Domestic  

  • 照明装置

    水田 敬

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    Application no:2012-90531  Date applied:2012.4

    Announcement no:2013-218968  Date announced:2013.10

    Patent/Registration no:特許第6183632号  Date registered:2017.8  Date issued:2017.8

    Country of applicant:Domestic  

  • 照明装置

    水田 敬,田村 英男,濱崎 浩史,福永 倫康,鶴田 克也

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    Application no:2011-287839  Date applied:2011.12

    Announcement no:2013-138081  Date announced:2013.7

    Patent/Registration no:特許第5769307号  Date registered:2015.7  Date issued:2015.8

    Country of applicant:Domestic  

  • プロセス解析プログラム

    島田 直樹,斉木 理奈,ダール アビナーブ,水田 敬

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    Application no:2011-185059  Date applied:2011.8

    Patent/Registration no:特許第5791105号  Date registered:2015.8  Date issued:2015.10

    Country of applicant:Domestic  

  • ヒートパイプおよび電子機器

    水田 敬,小谷 俊明,鶴田 克也,上田 亨

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    Patent/Registration no:5160945  Date registered:2012.12 

    Country of applicant:Domestic  

  • ヒートパイプ、ヒートパイプの製造方法および電子基板

    水田 敬,小谷 俊明,鶴田 克也,上田 亨

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    Patent/Registration no:4892515  Date registered:2011.12 

    Country of applicant:Domestic  

  • ヒートパイプ、電子機器

    水田 敬,鶴田 克也,小谷 俊明,上田 享

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    Patent/Registration no:5171456  Date registered:2013.1 

    Country of applicant:Domestic  

  • ヒートシンク、冷却モジュールおよび冷却可能な電子基板

    大沢 健治,鶴田 克也,小谷 俊明,水田 敬

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    Patent/Registration no:5537777  Date registered:2014.5 

    Country of applicant:Domestic  

  • 測定装置及び熱伝導率推定方法

    上田 享,大沢 健治,鶴田 克也,小谷 俊明,水田 敬

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    Patent/Registration no:5509443  Date registered:2014.4 

    Country of applicant:Domestic  

  • ヒートパイプ、ヒートパイプの製造方法およびヒートパイプ機能付き回路基板

    水田 敬,鶴田 克也,小谷 俊明,大沢 健治

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    Patent/Registration no:5178274  Date registered:2013.1 

    Country of applicant:Domestic  

  • 熱的接合材の熱伝導率測定装置および測定方法

    水田 敬,別所 久美,神戸 由美,鶴田 克也,小谷 俊明,大沢 健治

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    Patent/Registration no:5078703  Date registered:2012.9 

    Country of applicant:Domestic  

  • 冷却ユニットおよび電子機器

    水田 敬,鶴田 克也,福永 倫康,小谷 俊明

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    Patent/Registration no:5185012  Date registered:2013.1 

    Country of applicant:Domestic  

  • ヒートパイプおよび電子機器

    水田 敬,鶴田 克也,福永 倫康,小谷 俊明

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    Patent/Registration no:5334288  Date registered:2013.8 

    Country of applicant:Domestic  

  • 排熱ソケット

    水田 敬,長澤 秀雄,鶴田 克也

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    Patent/Registration no:5193403  Date registered:2013.2 

    Country of applicant:Domestic  

  • ヒートシンク一体化パッケージ及びその製造方法

    石原 政道,水田 敬,大沢 健治,福永 倫康,鶴田 克也

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    Patent/Registration no:5512992  Date registered:2014.4 

    Country of applicant:Domestic  

  • 熱輸送ユニット、電子機器

    水田 敬,上田 享

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    Patent/Registration no:5413735   Date registered:2013.11 

    Country of applicant:Domestic  

  • 照明装置

    藤井 敏,水田 敬

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    Patent/Registration no:5496757  Date registered:2014.3 

    Country of applicant:Domestic  

  • 放熱機構を備える照明装置、照明機器

    藤井 敏,水田 敬,上田 享,福永 倫康

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    Patent/Registration no:5496763  Date registered:2014.3 

    Country of applicant:Domestic  

  • 集魚装置

    藤井 敏,水田 敬,安楽 和彦,田中 康一郎

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    Patent/Registration no:5627932  Date registered:2014.10 

    Country of applicant:Domestic  

  • 集魚装置

    藤井 敏,水田 敬,安楽 和彦,田中 康一郎

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    Application no:2010-156131 

    Patent/Registration no:特許第5658496号  Date registered:2014.12  Date issued:2015.1

    Country of applicant:Domestic  

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Research Projects

  • NEDO 平成24年度戦略的省エネルギー技術革新プログラム(共同研究先として参加)

    2012.4 - 2014.3

    共同研究費  国内共同研究 

    水田 敬

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    Authorship:Coinvestigator(s)  Grant type:Competitive

    Grant amount:\22000000 ( Direct Cost: \20000000 、 Indirect Cost:\2000000 )

    超高輝度・大光量LED照明の開発

  • NEDO 平成23年度先導的産業技術創出事業(拠点連携研究)

    2011.4 - 2013.3

    民間企業  一般受託研究 

    水田 敬

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\37830000 ( Direct Cost: \29100000 、 Indirect Cost:\8730000 )

    低エネルギー消費型高輝度・小型LED水中照明による低環境負荷型灯火漁業の実証研究

  • JST A-STEP 本格研究開発 ハイリスク挑戦タイプ

    2010.4 - 2011.3

    民間企業  一般受託研究 

    水田 敬

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    低環境負荷型高輝度インテリジェント魚群コントロール照明の開発

  • 経済産業省 地域イノベーション創出研究開発事業

    2010.4 - 2011.3

    民間企業  一般受託研究 

    水田 敬

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    車載および小型電子機器用新型高放熱パッケージの開発

  • ものづくり中小企業製品開発等支援補助金(実証等支援事業)

    2009.4 - 2010.3

    民間企業  一般受託研究 

    水田 敬

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    Authorship:Coinvestigator(s)  Grant type:Competitive

    絶縁性と放熱を兼ねた注型低温熱可塑

  • JST A-STEP 本格研究開発 ハイリスク挑戦タイプ

    2009.4 - 2010.3

    民間企業  一般受託研究 

    水田 敬

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    低環境負荷型高輝度インテリジェント魚群コントロール照明の開発

  • 経済産業省 地域イノベーション創出研究開発事業

    2009.4 - 2010.3

    民間企業  一般受託研究 

    水田 敬

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    車載および小型電子機器用新型高放熱パッケージの開発

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Teaching Experience

  • 移動現象I

    2023.10

  • 数理・データサイエンス基礎

    2022.10
    Institution:鹿児島大学

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    Level:Undergraduate (specialized) 

  • 微分積分学II

    2022.4

  • 化学工学プログラミング

    Institution:鹿児島大学

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    Level:Undergraduate (specialized)  Country:Japan