SEKIOKA Shozo | Kansai Tech Corp.
スポンサーリンク
概要
関連著者
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SEKIOKA Shozo
Kansai Tech Corp.
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Sekioka S
Kansai Tech Corp.
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Ametani Akihiro
Power System Analysis Lab. Doshish Univ.
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Ametani Akihiro
Doshisha Univ. Kyoto
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Ametani Akihiro
Doshisha Univ.
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Nayel M
Doshisha University
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Nagaoka Naoto
Doshisha Univ. Kyoto
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BABA Yoshihiro
Doshisha University
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SONODA Toshio
Kansai Electric Power, Co.
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Sonoda Toshio
General R&d Center The Kansai Electric Power Co. Inc.
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Baba Y
Faculty Of Engineering Doshisha University
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NAYEL Mohamed
Doshisha University
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TAKEUCHI Yasuo
Kansai Electric Power
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Takeuchi Yasuo
General R&d Center The Kansai Electric Power Co. Inc.
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Ametani Akihiro
Department Of Electrical Engineering Doshisha University
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YAMAMOTO Kenji
Suzuka National College of Technology
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Matsubara Ichiro
Osaka National Research Institute Aist
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Nagaoka Naoto
Department Of Electrical Engineering Doshisha University
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Baba Yoshihiro
Department Of Molecular Microbiology Graduate School Of Pharmaceutical Sciences And Graduate School
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NAYEL Mohamed
Department of Electrical Engineering, Doshisha University
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TSUCHIYA Yusuke
Ohbayashi Constructor Co.
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MIYAMOTO Yoshiharu
Kansai Tech Corp.
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KOSUMI Takeshi
Wakayama Prefectural Gov.
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Sekioka Shozo
Kansai Tech Corporation
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Sugimoto Junichi
Osaka University
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WATANABE Kazuhiro
Osaka University
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Matsubara Ichiro
Osaka University
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Baba Yoshihiro
Department of Electrical Engineering, Doshisha University
著作論文
- Numerical Analysis of Wave Propagation Characteristics on a Buried Horizontal Conductor by an FDTD Method
- An Experimental Investigation of Transient Voltages in an Intelligent Building due to Lightning with Special Reference to Grounding
- Numerical Analysis of Wave Propagation Characteristics on a Buried Horizontal Conductor by an FDTD Method
- Induced Surge Characteristics from a Counterpoise to an Overhead Loop Circuit
- Experimental Study on an Influence of Soil Resistivity on Current-Dependent Grounding Resistance of Buried Conductor
- Simplified Calculation of Lightning Induced Surge on Distribution Line Considering Horizontal Electric Field due to Ground Conductivity
- Experimental Study on Absorption Energy of a Distribution Line Arrester by a Scale-Model Technique
- Experimental Study on Absorption Energy of a Distribution Line Arrester by a Scale-Model Technique
- Flashover Analysis of Transmission Lines Considering a Mutual Grounding Resistance between a Tower-Footing Base and a Vertical Counterpoise
- Lightning-Surge Analysis Model of Reinforced Concrete Pole and Grounding Lead Conductor in Distribution Line