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Volume 3: Combustion, Fuels and Emissions, Parts A and B | 2008

Advanced Dry Low NOx Combustor for Mitsubishi G Class Gas Turbines

Satoshi Tanimura; Masakazu Nose; Koichi Ishizaka; Satoshi Takiguchi; Jose Rodriguez

Design features and verification results for Mitsubishi Heavy Industries’ (MHI) latest gas Dry Low NOx (DLN) combustor technology for 1500°C G-class gas turbines is presented. Key design improvements include: A) Inlet aerodynamics: CFD based design air inlet for improved flow uniformity into the pre-mixers. B) Fuel/air mixing: integrated fuel injector and swirler to decrease local flame hot-spots and reduce NOx while preventing flashback. C) Combustor aerodynamics: redesigned flame holding baffle and combustor outer wall to achieve better flame stability and NOx reduction. D) Acoustic resonator: two acoustic resonators, one in the liner to prevent high frequency combustion dynamics and the other in the bypass valve for low frequency dynamics. Tests were conducted to verify the new DLN combustor by installing it in a M501G1 gas turbine at MHI’s T-Point combined cycle power plant, with more than 1500 special measurements. Following the preliminary verification period the combustor was installed at the same plant for long-term operation. The results demonstrate the following capabilities: A) Less than 15ppm NOx operation with turn down to 60% load. B) Stable combustion dynamics at all load levels. C) High combustor ignition reliability. D) Suitable for daily start and stop (DSS) operation. E) Good reliability and durability. F) Retrofitable to existing 501G and 701G gas turbines.Copyright


Archive | 2007

Premixed combustion burner for gas turbine

Koichi Ishizaka; Yutaka Kawata; Satoshi Takiguchi; Satoshi Tanimura


Archive | 2010

Combustion burner for gas turbine

Satoshi Takiguchi; Shinji Akamatsu; Kenji Sato; Naoki Abe


Archive | 2012

NOZZLE, GAS TURBINE COMBUSTOR AND GAS TURBINE

Shuhei Kajimura; Keijiro Saito; Satoshi Takiguchi; Mitsuhiro Nakao; Koichi Nishida; Shinji Akamatsu; Sosuke Nakamura; Masaki Mitani


Archive | 2007

Burner for burning premix in combustion chamber of gas turbine, has burner cylinder, which is arranged such that it surrounds fuel injector and forms air passage path between cylinder and injector

Koichi Ishizaka; Yutaka Takasago Kawata; Satoshi Takiguchi; Satoshi Tanimura


Archive | 2009

COMBUSTOR CONNECTION STRUCTURE, COMBUSTOR TRANSITION PIECE, DESIGNING METHOD OF COMBUSTOR TRANSITION PIECE, AND GAS TURBINE

Sosuke Nakamura; Satoshi Takiguchi; Norihiko Motoyama; Taiki Kinoshita; Yoshikazu Matsumura


Archive | 2010

Gas turbine combustion burner

Satoshi Takiguchi; Shinji Akamatsu; Kenji Sato; Naoki Abe


Archive | 2007

Premixing combustion mouth for gas turbine

Koichi Ishizaka; Yutaka Kawata; Satoshi Takiguchi; Satoshi Tanimura


Archive | 2009

Connecting structure for combustor, combustor tail pipe, method of designing combustor tail pipe, and gas turbine

Sosuke Nakamura; Satoshi Takiguchi; Norihiko Motoyama; Taiki Kinoshita; Yoshikazu Matsumura


Archive | 2017

Burner and gas turbine

Naoki Tsunoda; Satoshi Takiguchi; Shinji Akamatsu; Koichi Nishida; Katsunori Tanaka

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Satoshi Tanimura

Mitsubishi Heavy Industries

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Koichi Ishizaka

Mitsubishi Heavy Industries

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Shinji Akamatsu

Mitsubishi Heavy Industries

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Sosuke Nakamura

Mitsubishi Heavy Industries

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Keijiro Saito

Mitsubishi Heavy Industries

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Koichi Nishida

Mitsubishi Heavy Industries

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Masakazu Nose

Mitsubishi Heavy Industries

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Norihiko Motoyama

Mitsubishi Heavy Industries

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Taiki Kinoshita

Mitsubishi Heavy Industries

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