OHYAGI Shigeharu | Department of Mechanical Engineering, Saitama University
スポンサーリンク
概要
関連著者
-
OHYAGI Shigeharu
Department of Mechanical Engineering, Saitama University
-
Ohyagi Shigeharu
Department Of Mechanical Engineering Faculty Of Engineering Saitma University
-
Wang Xiao
Department of Medical Microbiology, Shandong University School of Medicine
-
王 新明
(株)荏原総合研究所
-
鈴木 立之
富山県立大学工学部
-
Wang X
Department Of Mechanical Engineering. Faculty Of Engineering. Tottori University
-
Wang Xiao
Department Of Mechanical Engineering. Faculty Of Engineering. Tottori University
-
SUZUKI Toyohiko
Department of Mechanical Engineering. Faculty of Engineering. Tottori University
-
OCHIAI Yoshitaka
Department of Mechanical Engineering. Faculty of Engineering. Tottori University
-
Yamanaka Akio
Graduate School Of Science And Engineering Saitama University
-
ARIGA Yosuke
Graduate School of Science and Engineering, Saitama University
-
OBARA Tetsuro
Department of Mechanical Engineering, Faculty of Engineering, Saitama University
-
CAI Pin
Department of Mechanical Engineering, Faculty of Engineering, Saitama University
-
Ohyagi S
Department Of Mechanical Engineering Saitama University
-
Ohyagi Shigeharu
Department Of Mechanical Engineering Saitama University
-
Ochiai Y
Department Of Mechanical Engineering. Faculty Of Engineering. Tottori University
-
Wang Xiao
Department Of Applied Physics And Materials Research Center The Hong Kong Polytechnic University
-
Cai Pin
Department Of Mechanical Engineering Faculty Of Engineering Saitama University
-
Ariga Yosuke
Graduate School Of Science And Engineering Saitama University
-
Obara Tetsuro
Department Of Mechanical Engineering Saitama University
-
Wang Xiao
Department Of Aeronautical Engineering Nagoya University
-
Obara Tetsuro
Department Of Mechanical Engineering Faculty Of Engineering Saitama University
著作論文
- Numerical Studies of Reacting Flows Over Flat Walls with Fuel Injection : Part 1, Velocity Anomaly and Hydrodynamic Instability
- Study on Performance of Detonation-Driven Shock Tube(Compressible Flow and Detonation)