KURIYAMA MASAFUMI | Department of Chemical Engineering, Tohoku University
スポンサーリンク
概要
関連著者
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KURIYAMA MASAFUMI
Department of Chemical Engineering, Tohoku University
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Kuriyama Masafumi
Department Of Chemistry And Chemical Engineering Yamagata University
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Tokanai Hideki
Department Of Chemistry And Chemical Engineering Yamagata University
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Harada Eiji
Department Of Chemistry And Chemical Engineering Yamagata University
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Arai Kunio
Department of Biochemistry & Engineering, Tohoku University
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Konno Hirotaka
Department of Chemical Engineering, Yamagata University
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Saito Shozaburo
Department of Biochemistry & Engineering, Tohoku University
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Ohta Masakatsu
Department of Cardiology, Nihon University School of Medicine
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HARADA Eiji
Department of Chemistry and Chemical Engineering, Yamagata University
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Toda Masayuki
Department of Chemistry and Chemical Engineering, Faculty of Engineering, Yamagata University, 4-3-16 Jonan, Yonezawa, Yamagata 992-8510, Japan
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KURIYAMA MASAFUMI
Department of Chemical Engineering, Yamagata University
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Tokanai H
Yamagata Univ. Yonezawa
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MARUYAMA Kazuyoshi
Department of Chemistry and Chemical Engineering, Yamagata University
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Yabune Hiroki
Department of Chemistry and Chemical Engineering, Yamagata University
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Yabune Hiroki
Department Of Chemistry And Chemical Engineering Yamagata University
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Maruyama Kazuyoshi
Department Of Chemistry And Chemical Engineering Yamagata University
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ONO Minobu
Department of Materials Science and Engineering, Yamagata Univ.
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KONNO Hirotaka
Department of Materials Science and Engineering, Yamagata Univ.
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Ono Minobu
Department Of Materials Science And Engineering Yamagata Univ.
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Kuriyama M
Yamagata Univ. Yonezawa
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OHTA MASAKATSU
Department of Chemical Engineering, Tohoku University
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WADA AKIO
Department of Chemical Engineering, Yamagata University
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HARADA Em
Department of Chemical Engineering, Yamagata University
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SATO RITSUO
Department of Chemical Engineering, Yamagata University
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YANAGAWA KINYA
Department of Chemical Engineering, Tohoku University
著作論文
- Heat Transfer of Phase Change Material-Water Slurry Flowing through Spiral-Channel Compact Heat Exchanger
- Volume of Cavity Formed behind Blade of Turbine Impeller in Aerated Agitated Vessel with Highly Viscous Newtonian Liquid
- THE NUMBER OF DAUGHTER DROPS FORMED PER BREAKUP OF A HIGHLY VISCOUS MOTHER-DROP IN TURBULENT FLOW
- A two-dimensional model for the secondary flow in an agitated vessel with anchor impeller.
- Convective heat transfer for highly viscous fluids with variable viscosity in cooling pipes.
- Heat transfer between wall and solid-water suspension flow in horizontal pipes.
- Mechanism of heat transfer to pseudoplastic fluids in an agitated tank with helical ribbon impeller.
- Heat transfer and temperature distributions in an agitated tank equipped with helical ribbon impeller.