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Application of Mixing-Controlled Combustion Models to Gas Turbine Combustors

机译:混合控制燃烧模型在燃气轮机燃烧室中的应用

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Gas emissions were studied from a staged Rich Burn/Quick-Quench Mix/Lean Burncombustor were studied under test conditions encountered in High Speed Research engines. The combustor was modeled at conditions corresponding to different engine power settings, and the effect of primary dilution airflow split on emissions, flow field, flame size and shape, and combustion intensity, as well as mixing, was investigated. A mathematical model was developed from a two-equation model of turbulence, a quasi-global kinetics mechanism for the oxidation of propane, and the Zeldovich mechanism for nitric oxide formation. A mixing-controlled combustion model was used to account for turbulent mixing effects on the chemical reaction rate. This model assumes that the chemical reaction rate is much faster than the turbulent mixing rate.

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