[1]. Measurement of Dissolved Components of Zeotropic Refrigerant Mixture in POE Oil Trans. of JSRAE 41/4 335-342 (2024) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] 有賀弘晟, Wannarat Rakpakdee, 福田充宏, 本澤政明 [2]. 69/ 498-505 (2024) [Refereed] non-refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] co-author [Author] 本澤政明, 福田充宏 [Notes] レビュー [3]. Experimental study on the measurement criteria for measuring surface tension in oil/refrigerant mixtures by maximum bubble pressure method Colloids and Surfaces A: Physicochemical and Engineering Aspects 701/ - 134849 (2024) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Wannarat Rakpakdee, Mitsuhiro Fukuta, Masaaki Motozawa, Guanting Lee, Ryo Tsujita [4]. Experimental Study on Sealing Performance and Flow Characteristics of Magnetic Fluid in Extremely Tiny Clearance under Magnetic Field Nanotechnology Perceptions 19/ 80-93 (2023) [Refereed] refereed [Internationally co-authored papers] internationally co-authored paper [Lead author or co-author] co-author [Author] Masaaki Motozawa, Yusuke Kato, Wannarat Rakpakdee, Mitsuhiro. Fukuta [5]. Characteristics of heat transfer and flow resistance of magnetic fluid flow through porous media combined with magnetic field effect Experiemtnal Thermal and Fluid Science 144/ - 110851 (2023) [Refereed] refereed [Internationally co-authored papers] internationally co-authored paper [Lead author or co-author] co-author [Author] Wannarat Rakpakdee, Masaaki Motozawa, Mitsuhiro Fukuta, Weerachai Chaiworapuek
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[1]. (2018) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]福田他 [2]. Compressors for Air Conditioning and Refrigeration Japan Society of Refrigerating and Air Conditioning Engineers (2018) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]福田 充宏,他 26名 [3]. (2013) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]福田 充宏,柳沢,他20名 |
[1]. 2種の自作摩擦試験機による磁性流体の面接触摩擦特性の評価 2024年度磁性流体連合講演会, 名古屋 (2024/12/) other [Presenter]佐藤駿, 本澤政明, 福田充宏 [2]. 球状・ロッド状磁性ナノ粒子の配向型固形試料と磁性流体液体試料の交流磁化特性の比較 2024年度磁性流体連合講演会, 名古屋 (2024/12/) other [Presenter]森勇乙, 本澤政明, 福田充宏, 大多哲史 [3]. Effect of ultrasound irradiation on suppressed heat transfer in drag reduced flow of viscoelastic fluid The Third Pacific Rim Thermal Engineering Conference 2024 (PRTEC2024) (2024/12/) other [Presenter]Tadayuki Kadowaki, Masaaki Motozawa, Mitsuhiro Fukuta, Wannarat Rakpakdee, Weerachai Chaiworapuek [4]. Experimental Study on Dissolving Behavior of Propane in Refrigeration Oil The Third Pacific Rim Thermal Engineering Conference 2024 (PRTEC2024) (2024/12/) other [Presenter]Pansang Thepsongsang, Mitsuhiro Fukuta, Masaaki Motozawa, Wannarat Rakpakdee, Seheon Choi [5]. Experimental Investigation of Magneto-Acoustic Heat Transfer Augmentation of Magnetic Nanofluid Flow in Rectangular Duct 34th International Symposium on Transport Phenomena (ISTP34), Taoyuan (2024/11/) other [Presenter]Nuttakorn, Chuenboonma, Masaaki Motozawa, Mitsuhiro Fukuta, Wannarat Rakpakdee, Weerachai Chaiworapuek
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[1]. joint (with other institution) leader ( 2021/4 ) [2]. joint (with other institution) leader ( 2020/4 ) [3]. joint (with other institution) leader ( 2014/4 ~ 2015/3 ) [4]. joint (with other institution) leader ( 2014/4 ~ 2015/3 ) [5]. joint (with other institution) leader ( 2014/4 ~ 2015/3 )
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[1]. 無潤滑テスラタービンの開発による冷凍サイクルの高効率化 ( 2023/4 ) Grant-in-Aid for Scientific Research (C) leader [2]. 冷凍サイクルにおけるナノオイルの適用に関する基礎研究 ( 2016/4 ~ 2019/3 ) Grant-in-Aid for Scientific Research (C) leader [3]. 熱交換器効率向上を目的とした高性能油分離器の開発 ( 2010/4 ~ 2013/3 ) Grant-in-Aid for Scientific Research (C) leader [4]. 衝動タービン形CO2膨張機に関する基礎研究 ( 2007/4 ~ 2010/3 ) Grant-in-Aid for Scientific Research (C) leader [5]. 圧縮/膨張ユニット組み込みによる家庭用CO2エアコンの高効率化 ( 2004/4 ~ 2007/3 ) Grant-in-Aid for Scientific Research (C) leader [Notes] 二酸化炭素冷凍サイクルにおける絞り損失を膨張機により回収し,エアコンサイクルの高効率化を図る
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[1]. 次世代低GWP冷媒の実用化に向けた高効率冷凍空調技術の開発 (2023/6 - 2026/3 ) [Offer orgnization] NEDO [System name] 委託研究 [Role] principal investigator [2]. HFO冷媒の自己分解反応の安全性とリスク評価の研究/ 冷媒圧縮機におけるレイヤーショートの要因および放電パターンの解明 (2022/4 - 2023/3 ) [Offer orgnization] NEDO [System name] 東京大学からの再委託 [Role] principal investigator [3]. 磁気機能性なの冷凍機油による冷媒圧縮機の高効率化 (2021/4 ) [Offer orgnization] NEDO [System name] NEDO先導研究プログラム [Role] co-investigator(Kenkyū-buntansha) [4]. HFO冷媒の自己分解反応の安全性とリスク評価の研究/ 冷媒圧縮機におけるレイヤーショートの要因および放電パターンの解明 (2021/4 ) [Offer orgnization] NEDO [System name] 東京大学からの再委託 [Role] principal investigator [5]. 磁気機能性なの冷凍機油による冷媒圧縮機の高効率化 (2020/7 ) [Offer orgnization] NEDO [System name] NEDO先導研究プログラム [Role] co-investigator(Kenkyū-buntansha)
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[1]. (2023/5) [Association] JSAE [2]. (2023/4) [3]. (2021/3) [4]. (2017/10) [Notes] 表彰 [5]. (2016/5) [Notes] 日本冷凍空調学会
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[1]. 乾き度計測システム [Application Number] 特願2020-040588 (2020/3/10) [Patent Number] 特許第7531150 (2024/8/1) [2]. 圧縮機 (2017/12/1) [Patent Number] 特許第6248620号 [3]. 乾き度計測システム [Application Number] 特願2014-207954 (2014/10/9) [Patent Number] 特許第6323290号 (2018/4/20) [4]. 乾き度計測システム [Application Number] 特願2014-207954 (2014/10/9) [5]. 圧縮機 [Application Number] 特願2013-267718 (2013/12/25)
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[1]. 2020年度 日本冷凍空調学会年次大会 (2020/9) [Role at conference, etc.] other [Site of conference, etc.] 三重大学 [Notes] 副実行委員長 [2]. 15th Joint Symposium between Sister Universities in Mechanical Engineering (2018/8) [Role at conference, etc.] is leader [Site of conference, etc.] Hamamatsu [3]. 2005年度日本冷凍空調学会年次大会 (2005/10) [Role at conference, etc.] is leader [Site of conference, etc.] 早稲田大学 [Notes] 学会主催者(日本冷凍空調学会) [4]. 2004年度日本冷凍空調学会年次大会 (2004/10) [Role at conference, etc.] other [Site of conference, etc.] 静岡大学 [Notes] 学会主催者(日本冷凍空調学会)
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[1]. 学生引率(全日本学生フォーミュラ大会) (2012/9 - 2012/9 ) [Notes] 顧問 [2]. 学生引率(全日本学生フォーミュラ大会) (2011/9 ) [3]. 学生引率(全日本学生フォーミュラ大会) (2010/9 ) [Notes] SUM [4]. 学術雑誌等の編集(日本冷凍空調学会論文集) (2009/5 - 2011/5 ) [Notes] 編集委員 [5]. 学生引率(川崎重工ほか) (2007/9 ) [Notes] 日本機械学会学生会関西東海合同見学会
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