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ASME 2011 Turbo Expo: Turbine Technical Conference and Exposition | 2011

Development and Strategy for A-USC Steam Turbine Cycle

Nobuo Okita; Takashi Sasaki; Takeo Suga; Shogo Iwai

Efficiency improvement of thermal power plants is one of the key technologies to protect the global environment because of lower emission gas. There are many approaches in this regard, which are investigated and developed around the world. Thermal efficiency of fossil power plants has been improved by raising steam temperature as high as 620 C in a realization of Ultra Super Critical (USC) steam turbine system. In order to enhance the thermal efficiency further, we are developing the Advanced Ultra Super Critical (A-USC) steam turbine system using high pressure and high temperature steam of 700 C or over 700 C. The main focus of the Research & Development of A-USC steam turbine is the verification of the alloys for the large rotor, casing and valve components, and the main issue for application to the power plant is an economical aspect and field of technology for the realization of such steam conditions with cost-effectiveness, for instance, optimization of cycle heat balance, turbine design, welding technology and so on. This paper describes briefly about R&D results of A-USC steam turbine and suggests an economical strategy in order to make it possible to be realized sooner.© 2011 ASME


Archive | 2009

CARBON-DIOXIDE-CAPTURE-TYPE STEAM POWER GENERATION SYSTEM

Katsuya Yamashita; Asako Inomata; Yukio Oohashi; Takashi Ogawa; Kazutaka Ikeda; Takeo Suga


Archive | 2011

Carbon dioxide recovery method and carbon-dioxide-recovery-type steam power generation system

Takeshi Sasanuma; Nobuo Okita; Takeo Takahashi; Mikio Takayanagi; Takeo Suga; Yuya Murakami; Toshihisa Kiyokuni; Hideo Kitamura


Archive | 2009

NICKEL-BASED ALLOY FOR TURBINE ROTOR OF STEAM TURBINE AND TURBINE ROTOR OF STEAM TURBINE

Kuniyoshi Nemoto; Kiyoshi Imai; Yomei Yoshioka; Masayuki Yamada; Reki Takaku; Takeo Suga; Masafumi Fukuda; Kenichi Okuno; Akihiro Takakuwa


Archive | 2010

STEAM TURBINE POWER PLANT AND OPERATING METHOD THEREOF

Nobuo Okita; Takeo Suga; Haruhiko Hirata


Archive | 2009

Carbon-dioxide-recovery-type steam power generation system

Kazutaka Ikeda; Asako Inomata; Hakaru Ogawa; Yukio Ohashi; Takeo Suga; Katsuya Yamashita


Archive | 2010

NICKEL-BASE ALLOY FOR TURBINE ROTOR OF STEAM TURBINE AND TURBINE ROTOR OF STEAM TURBINE USING THE SAME

Shigekazu Miyashita; Kiyoshi Imai; Masayuki Yamada; Kuniyoshi Nemoto; Takeo Suga; Takeo Takahashi; Kazutaka Ikeda


Archive | 2009

Steam turbine power generation facility and method of operating the same

Nobuo Okita; Takeo Suga; 信雄 沖田; 威夫 須賀


Archive | 2009

NICKEL-BASE CASTING SUPERALLOY AND CAST COMPONENT FOR STEAM TURBINE USING THE SAME AS MATERIAL

Masayuki Yamada; Kiyoshi Imai; Kuniyoshi Nemoto; Shigekazu Miyashita; Kazutaka Ikeda; Takeo Suga


Archive | 2005

Steam turbine power generation system and low-pressure turbine rotor

Takeo Suga; Ryuichi Ishii; Takeo Takahashi; Masafumi Fukuda

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