Development of 300 kW class ceramic gas turbine (CGT303)

被引:0
|
作者
Ohhashi, I
Arakawa, S
机构
[1] Technical Research Division, Yanmar Diesel Engine Company, Limited, Kyoto
关键词
D O I
10.1115/1.2815464
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
CGT303 is a two-shaft regenerative ceramic gas turbine with rotary heat exchangers for the purpose of mobile power generator. It is also widely adaptable for industrial machinery and construction machinery as well. The development program of CGT303 is funded by the New Energy and industrial Technology Development Organization (NEDO). The maximum output power of 300 kW and thermal efficiency of 42 percent at TiT 1350 degrees C are the objectives of this development. The high TiT requires all gas passage components to be made of ceramics that are designed appropriately to keep sufficient strength by using sophisticated computer analysis. Hot spin tests on ceramic turbine rotors and thermal shock tests on stationary ceramic components have been carried out to prove their strength. The paper covers the design concept of CGT303 and results of analysis.
引用
收藏
页码:777 / 782
页数:6
相关论文
共 50 条
  • [21] Sub-Terahertz MSL and CPW rectenna using 303 GHz 300 kW-class Gyrotron
    Mizojiri, Sei
    Minakawa, Shunsuke
    Suzuki, Masatoshi
    Shimamura, Kohei
    Yokota, Shigeru
    Fukunari, Masafumi
    Saito, Teruo
    Tatematsu, Yoshinori
    Yamaguchi, Yusuke
    2018 IEEE WIRELESS POWER TRANSFER CONFERENCE (WPTC), 2018,
  • [22] Subterahertz Wireless Power Transmission Using 303-GHz Rectenna and 300-kW-Class Gyrotron
    Mizojiri, Sei
    Shimamura, Kohei
    Fukunari, Masafumi
    Minakawa, Shunsuke
    Yokota, Shigeru
    Yamaguchi, Yuusuke
    Tatematsu, Yoshinori
    Saito, Teruo
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2018, 28 (09) : 834 - 836
  • [23] Creep lifetime prediction for advanced silicon nitrides in 300 kW ceramic gas turbines
    Okada, A
    Cao, JW
    Lofaj, F
    ENVIRONMENT CONSCIOUS MATERIALS - ECOMATERIALS, 2000, : 741 - 755
  • [24] Secondary flow stabilization of 100 kW-class micro gas turbine
    Hyung-Soo Lim
    Je-Sung Bang
    Bum-Seog Choi
    Moo-Ryong Park
    Jun-Young Park
    Jeongmin Seo
    Soon-Chan Hwang
    Jeong Lak Sohn
    Byung Ok Kim
    Journal of Mechanical Science and Technology, 2017, 31 : 1753 - 1761
  • [25] Secondary flow stabilization of 100 kW-class micro gas turbine
    Lim, Hyung-Soo
    Bang, Je-Sung
    Choi, Bum-Seog
    Park, Moo-Ryong
    Park, Jun-Young
    Seo, Jeongmin
    Hwang, Soon-Chan
    Sohn, Jeong Lak
    Kim, Byung Ok
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2017, 31 (04) : 1753 - 1761
  • [26] Analysis of Operating Characteristics of 200kW Class Micro Gas Turbine
    Kim, Jeong Ho
    Kang, Do Won
    Kim, Tong Seop
    TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS B, 2013, 37 (11) : 1015 - 1022
  • [27] The automotive ceramic gas turbine development results in Japan
    Nakazawa, N
    Niwa, K
    Sugimoto, T
    INDUSTRIAL CERAMICS, 1999, 19 (03): : 179 - 183
  • [28] DEVELOPMENT OF CERAMIC COMPONENTS FOR GAS-TURBINE ENGINES
    KHANDELWAL, PK
    GROSECLOSE, LE
    HEITMAN, PW
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1986, 133 (03) : C119 - C119
  • [29] DEVELOPMENT AND EVALUATION OF CERAMIC COMPONENTS AND EBCS FOR GAS TURBINE
    Fukudome, Takero
    Tsuruzono, Sazo
    Tatsumi, Tetsuo
    Ichikawa, Yoshihiro
    Hisamatsu, Tohru
    Yuri, Isao
    ADVANCES IN CERAMIC COATINGS AND CERAMIC-METAL SYSTEMS, 2005, 26 (03): : 147 - 157
  • [30] Research and development for gas turbine system in GTHTR300
    Kunitomi, K
    Katanishi, S
    Takada, S
    Takizuka, T
    Yan, X
    Kosugiyama, S
    JSME INTERNATIONAL JOURNAL SERIES B-FLUIDS AND THERMAL ENGINEERING, 2004, 47 (02) : 261 - 267