Tanaka Yasunori | Kanazawa Univ. Kanazawa Jpn
スポンサーリンク
概要
関連著者
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Tanaka Yasunori
Kanazawa Univ. Kanazawa Jpn
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UESUGI Yoshihiko
Kanazawa University
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Tanaka Yasunori
Div. Of Electrical Eng. & Computer Sic. Kanazawa University
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Tanaka Yasunori
Kanazawa University
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SHINKAI Takeshi
Toshiba Corporation
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ISHIJIMA Tatsuo
Kanazawa University
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Al-mamun Sharif
Div. Of Electrical Eng. & Computer Sic. Kanazawa University
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Kaneko Shuhei
Tokyo Electric Power Co. Ltd. Yokohama
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OKABE Shigemitsu
Tokyo Electric Power Company
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Okabe Shigemitsu
Tokyo Electric Power Co. Ltd. Yokohama
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Uesugi Yoshihiko
Div. Of Electrical Eng. & Computer Sic. Kanazawa University
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Mori Tadashi
Tmt&d Corporation
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UESUGI Yoshihiko
Div. of Electrical Eng. & Computer Sic., Kanazawa University
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Iwamoto Katsuharu
Tmt&d Corporation
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Numada Toru
Division Of Electrical And Computer Engineering Kanazawa University
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Okabe Shigemitsu
Tokyo Electric Power Co.
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SHINSEI Naoki
Kanazawa University
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ISHIDA Masahiro
Kanazawa University
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KAMIMAE Ryo
Kanazawa University
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IWAMOTO Katsuharu
Toshiba Corporation
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NISHIMURA Kiyohiko
National Insitute for Fusion Science
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TANAKA Yasunori
Division of Electrical Engineering & Computer Science, Kanazawa University
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UESUGI Yoshihiko
Department of Thermonuclear Fusion Research,Naka Fusion Research Establishment,Japan Atomic Energy R
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Kaneko Shuhei
Engineering R&d Division Tokyo Electric Power Co. Ltd.
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Uda Tatsuhiko
National Institute For Fusion Science
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TANAKA Yasunori
Department of Electrical and Electronic Engineering, Kanazawa University
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KAWANO Hiromichi
Toshiba Corp.
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Nishimura Kiyohiko
National Institute For Fusion Science
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MORISHITA Yu
Div. of Electrical Eng. & Computer Sci, Kanazawa University
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AL-MAMUN Sharif
Kanazawa University
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Morishita Yu
Div. Of Electrical Eng. & Computer Sci Kanazawa University
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Okabe Shigemitsu
Engineering R&d Division Tokyo Electric Power Co. Ltd.
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Sakuta Tadahiro
Kanazawa University
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Chandra Paul
Kanazawa University
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Paul Khokan
Kanazawa University
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XIAOLI Song
Kanazawa University
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NUMADA Toru
Division of Electrical and Computer Engineering, Kanazawa University
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Numada Toru
Department of Electrical and Electronic Engineering, Kanazawa University
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MORI Tadashi
Toshiba Corporation
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MORI Tadashi
TMT&D Corporation
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KAWANO Hiromichi
TMT&D Corporation
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IWAMOTO Katsuharu
TMT&D Corporation
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Tanaka Yasunori
Department Of Electrical And Electronic Engineering Kanazawa University
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NUMADA T.
Kanazawa University
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KANEKO S.
Tokyo Electric Power Company
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OKABE S.
Tokyo Electric Power Company
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Tanaka Masahiro
National Institute For Fusion Science
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Uesugi Yoshihiko
Department of Electrical and Electronic Engineering, Kanazawa University
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EZUMI Naomichi
Nagano National College of Technology, 716 Tokuma, Nagano 381-8550, Japan
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SAWADA Keiji
Shinshu University
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Kaneko Shuhei
Tokyo Electric Power Co.
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AKAHANE Kazuhiko
Nagano National College of Technology
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EZUMI Naomichi
Nagano National College of Technology
著作論文
- CO_2 and H_2 Gas Mixture Inclusion Effect on Shrinkage of Ar Induction Thermal Plasmas
- Effect of transport properties of CO_2+H_2 on the temperature distribution of Ar thermal plasma
- CO_2+H_2 gas mixture inclusion effect on shrinkage of Ar induction thermal plasmas
- Numerical Simulation of CO_2+H_2 Arc Quenching Process in Different Nozzle Shapes
- Thermodynamic and Transport Properties of Ar Thermal Plasmas with Polymer Ablated Vapors and Influence of Their Inclusions on Plasma Temperature(Advanced Fusion of Functional Fluids Engineering)
- Influence of Polymer Vapor Concentration on Temperature of Ar Induction Thermal Plasmas During Polymer Solid Powder Injections
- Gas Flow Simulation in GCB Chambers Featuring Hot Gas Energy
- Gas Flow Simulation of GCB Chambers Featuring Hot Gas Energy
- Thermodynamic and Transport Properties of N_2/O_2 Mixtures at Different Admixture Ratios
- Influence of Polymer Vapor Concentration on Temperature of Ar Induction Thermal Plasmas During Polymer Solid Powder Injections
- Non-Equilibrium Modelling of High Power-Density Ar-N_2-H_2 Induction Plasmas at Reduced Pressure
- Observation of Decaying Arc Behaviors in Ar and Ar/SF_6 Gas Confined in a Nozzle using a High-Speed Video Camera
- Numerical Simulation of Arc Behaviour with Consideration of Reaction Rates
- Ejection Frequency of Spallation Particles from Polyamide Materials with Water Absorption Irradiated by Ar Thermal Plasma with Molecular Gases
- Observation of Decaying Arc Behaviors in Ar and Ar/SF_6 Gas Confined in a Nozzle using a High-Speed Video Camera
- Ejection Frequency of Spallation Particles from Polyamide Materials with Water Absorption Irradiated by Ar Thermal Plasma with Molecular Gases
- Optical Emission and Mass Spectra Observations during Hydrogen Combustion in Atmospheric Pressure Microwave Plasma
- Numerical Simulation of Arc Behaviour with Consideration of Reaction Rates