Tatsuo Ishiguro
Mitsubishi Heavy Industries
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Featured researches published by Tatsuo Ishiguro.
ASME Turbo Expo 2003, collocated with the 2003 International Joint Power Generation Conference | 2003
Tadashi Tsuji; Noboru Yanai; Kentaro Fujii; Hitoshi Miyamoto; Masaharu Watabe; Tatsuo Ishiguro; Yuichi Ohtani; Hideyuki Uechi
Today, the need to develop more efficient thermal power systems that emit less greenhouse effect gas has become a paramount importance. In line with this awareness, our research has leapt into such development that the combination of SOFC and Gas Turbine could generate power at extremely high efficiency. In this paper, we would like to present our concept of Inter Cooled Multistage SOFC-GT Hybrid Power System, developed to maximize fuel heat input to the system. We propose the combination of F-class GT (TIT 1350°C class) and 5 stage SOFC as the best for the hybrid power plant system and 77% (LHV base) is achieved at high pressure ratio.Copyright
12th International Conference on Nuclear Engineering, Volume 3 | 2004
Yoshiyuki Kondo; Koichi Tanimoto; Keiichi Hori; Tatsuo Ishiguro; Junji Ogata; Shigemitsu Umezawa; Tetsuya Teramae; Yuji Furukawa
For blowdown phenomenon that would appear in primary stage of large break LOCA (Loss Of Coolant Accident), there exists downward misty flow over fuel rods. The behavior of droplets in such flow has effects on clad temperature because droplet removes heat from a reactor core by its direct contact on fuel rods and its evaporation at the surface and in steam flow. Droplets are generated from liquid film flowing with flashing on surface of super-heating clad or flow directory from upper plenum when coolant flows into fuel rods from upper plenum of a reactor vessel. Droplet flows in steam flow with integration and disintegration, and finally becomes steady droplet, i.e. droplet flows in the fuel rods without changing its diameter. For estimation of thermal hydraulic behavior of coolant, LOCA analysis code, MCOBRA/TRAC was developed. In order to estimate peak clad temperature (PCT) over LOCA phenomenon especially reflooding phase following blowdown phase, droplet diameter in actual plant condition must be clarified. We carried out the experiment to measure a diameter of stable droplet simulating actual condition of large break LOCA with two kinds of fluids: Sulfur Hexafluoride (SF6 ) and ethyl alcohol (C2 H5 OH) as gas and liquid phase, respectively. Those fluids can simulate a high pressure and temperature steam-water system of 6MPa, and 550K at the condition of the lower pressure and atmospheric temperature of 0.5MPa and 300K, respectively. The experiment was focused on investigating the Weaber number of steady droplet in the blowdown phenomenon of large break LOCA. It was clarified that the minimum distance was under 300mm, and the Weaber number was 3.1.Copyright
Archive | 2011
Shinsuke Sato; Shigeto Hirai; Tatsuo Ishiguro
Archive | 2002
Tsuguo Hasegawa; Tatsuo Ishiguro; Katsunori Tanaka; 田中 克則; 石黒 達男; 長谷川 貢生
Archive | 2002
Tsuguo Hasegawa; Tatsuo Ishiguro; Katsunori Tanaka; 田中 克則; 石黒 達男; 長谷川 貢生
Archive | 1998
Tatsuo Ishiguro; Shigemi Mandai; Mitsuru Inada; Satoshi Tanimura; Kouichi Nishida
Archive | 2002
Tatsuo Ishiguro; Yoshiyuki Kondo; Yasuhiko Hirao; Hiroshi Hirano; Toshiyuki Mizutani; Tomoyuki Inoue; Kaori Nagai; Junichiro Kodama
Archive | 2000
Shinji Akamatsu; Mitsuru Inada; Tatsuo Ishiguro; Masaaki Matsuura; Katsunori Tanaka; Yasushi Watanabe; 正昭 松浦; 康司 渡邊; 克則 田中; 達男 石黒; 満 稲田; 真児 赤松
Archive | 2009
Hitoshi Morimoto; Hidenori Kanki; Tatsuo Ishiguro; Hiroki Shibata; Tetsu Konishi; Kenji Sato
Archive | 2009
Tatsuo Ishiguro; Shusuke Kamiyoshi; Satoru Konishi; Hitoshi Morimoto; Kenji Sato; Hiroki Shibata; 賢治 佐藤; 哲 小西; 宏樹 柴田; 仁志 森本; 達男 石黒; 秀典 神吉