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Design trade-off study between efficiency and rotor forcing attenuation in a transonic turbine stage

机译:跨音速涡轮级效率与转子强迫衰减之间的设计折衷研究

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A multi-objective optimisation procedure was applied to the 3D design of a transonic turbine vane row, considering efficiency and stator outlet pressure distortion, which is directly related to the forcing induced in the rotor. The characteristic features that define different individuals along the Pareto Front were described, analysing the differences between high efficiency airfoils and low interaction. Pressure distortion was assessed by means of a model that requires only of the computation the steady flow field in the domain of the stator. The reduction of aerodynamic rotor forcing was validated via unsteady multistage aerodynamic computations carried out with NUMECA FINE™/Turbo. A well known loss prediction method was used to perform total loss decomposition to quantify the influ-ence on efficiency of reducing rotor forcing. Results show that when striving for efficiency, the rotor was affected by few, but intense shocks. On the other hand, when the objective was the minimisation of distortion, multiple shocks appeared.
机译:考虑效率和定子出口压力畸变,将多目标优化程序应用于跨音速涡轮叶片排的3D设计,这直接与转子中的强迫有关。描述了沿帕累托前沿定义不同个体的特征,分析了高效翼型和低交互性之间的差异。压力畸变是通过一个模型进行评估的,该模型仅需要计算定子区域内的稳定流场。通过使用NUMECA FINE™/ Turbo进行的非稳态多级空气动力学计算,验证了空气动力学转子强迫的减少。众所周知的损耗预测方法用于执行总损耗分解,以量化对降低转子受力效率的影响。结果表明,在追求效率的过程中,转子受到的冲击很小,但冲击很大。另一方面,当目标是最小化失真时,会出现多重冲击。

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