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Featured researches published by Tomoya Murota.


Volume 1: Fuels and Combustion, Material Handling, Emissions; Steam Generators; Heat Exchangers and Cooling Systems; Turbines, Generators and Auxiliaries; Plant Operations and Maintenance | 2013

Numerical Simulation of Turbulent Combustion Flows for Coaxial Jet Cluster Burner

Keita Yunoki; Tomoya Murota; Keisuke Miura; Teruyuki Okazaki

We have developed a burner for the gas turbine combustor, which was high efficiency and low environmental load. This burner is named the “coaxial jet cluster burner” and, as the name indicates, it has multiple fuel nozzles and holes in a coaxial arrangement. To form lean premixed combustion, this burner mixes fuel and air in the multiple holes rapidly. The burner can change the combustion form between premixed and non-premixed combustion by controlling the mixing. However, the combustion field coexisting with premixed and non-premixed combustion is complicated. The phenomena that occur in the combustion field should be understood in detail.Therefore, we have developed the hybrid turbulent combustion (HTC) model to calculate the form in which non-premixed flame coexists with premixed flame. Turbulent flow has been simulated using a large eddy simulation (LES) with a dynamic sub grid scale (SGS) model coupled with the HTC model. These models were programmed to a simulation tool based on the OpenFOAM library. However, there were unclear points about their applicability to an actual machine evaluation and the predictive precision of CO concentration which affects burner performance. In this study, we validate the HTC model by comparing its results with measured gas temperature and gas concentration distributions obtained with a coaxial jet cluster burner test rig under atmospheric pressure. In addition, we analyze the CO generation mechanism for the lean premixed combustion in the burner.Copyright


Archive | 2005

Combustor and combustion method for combustor

Shouhei Yoshida; Yoshitaka Hirata; Hiroshi Inoue; Tomoya Murota; Toshifumi Sasao; Nariyoshi Kobayashi


Proceedings of the Combustion Institute | 2011

Large eddy simulation of a pulverized coal jet flame ignited by a preheated gas flow

Kenji Yamamoto; Tomoya Murota; Teruyuki Okazaki; Masayuki Taniguchi


Archive | 2008

Gas turbine combustor and fuel supply method for same

Shouhei Yoshida; Yoshitaka Hirata; Kazuyuki Itou; Tomoya Murota; Hiroshi Inoue; Tomohiro Asai


Archive | 2005

Combustor, gas turbine combustor, and air supply method for same

Shouhei Yoshida; Yoshitaka Hirata; Hiroshi Inoue; Tomoya Murota; Toshifumi Sasao; Akinori Hayashi; Isao Takehara


Archive | 2003

NOZZLE FOR FUEL COMBUSTION AND FUEL SUPPLYING METHOD FOR GAS TURBINE COMBUSTOR

Tomohiro Asai; Hiroshi Inoue; Tomoya Murota; 洋 井上; 知也 室田; 智広 浅井


Archive | 2004

Burner and combustion method of burner

Yoshitaka Hirata; Hiroshi Inoue; Shigeyoshi Kobayashi; Tomoya Murota; Toshibumi Sasao; Shohei Yoshida; 洋 井上; 正平 吉田; 知也 室田; 成嘉 小林; 義隆 平田; 俊文 笹尾


Archive | 2002

Gas turbine combustor, fuel injection nozzle and fuel injection method of gas turbine combustor

Yoshitaka Hirata; Kazuyuki Ito; Tomoya Murota; Toshibumi Sasao; Isao Takehara; Shohei Yoshida; 和行 伊藤; 正平 吉田; 知也 室田; 義隆 平田; 勲 竹原; 俊文 笹尾


Volume 2: Coal, Biomass and Alternative Fuels; Combustion and Fuels; Oil and Gas Applications; Cycle Innovations | 1999

Large-Eddy Simulation of Combustion Oscillation in Premixed Combustor

Tomoya Murota; Masaya Ohtsuka


Archive | 2007

Pulverized coal burning boiler

Tomoya Murota; Teruyuki Okazaki; Kenji Yamamoto; 知也 室田; 研二 山本; 輝幸 岡崎

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