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Prediction of Turbine Cascade Flows with a Quasi-Three-Dimensional Rotor ViscousCode and the Extension of the Algebraic Turbulence Model

机译:准三维转子粘性代码预测涡轮叶栅流动及代数湍流模型的推广

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A quasi-three-dimensional rotor viscous code is used to predict high subsonicflow through an annular cascade of turbine blades. The well known Baldwin-Lomax turbulence model in used in the program. An attempt was made to implement a new turbulence model, based on renorminalization group theory in the program. This was done to improve the prediction of the boundary layer transition on the blade surfaces and subsequent wake development. The comparison of these two turbulence models with experimental data are presented. Pressure, velocity ratio, flow angle distributions and downstream wake predictions were studied using results from RVCQ3D(Rotor Viscous Code Quasi-Three-Dimensional) code. The computed results showed good agreement with experiment when comparing the blade surface local static pressure to inlet total pressure ratio at the midspan position of the annular turbine cascade. The computational approach used to implement the turbulence model is also described. RVCQ3D, Turbulence Models.

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