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Optimization of Blade Sweep in a Transonic Axial Compressor Rotor

机译:跨音速轴向压气机转子叶片扫掠的优化

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摘要

This paper describes the optimization of blade sweep in a transonic axial compressor rotor. The shape optimization has been performed using response surface method and the three-dimensional Navier-Stokes analysis. Two shape variables of the rotor blade, which are used to define the rotor sweep, are introduced to increase the adiabatic efficiency of the axial compressor. Blade sweep has been used in the transonic compressor design with the intent of reducing shock losses. Throughout the optimization, optimal shape having a backward sweep is obtained. Adiabatic efficiency, which is the objective function of the present optimization, is successfully increased by 1.25 percent. Separation line due to the interference between a shock and surface boundary layer on the blade suction surface is moved downstream for the optimized blade compared to the reference one. It is noted that the increase in adiabatic efficiency for the optimized blade is caused by moving the separation line to the downstream on the blade suction surface.
机译:本文描述了跨音速轴向压缩机转子中叶片扫掠的优化。使用响应面方法和三维Navier-Stokes分析进行了形状优化。引入了用于定义转子扫掠的转子叶片的两个形状变量,以提高轴向压缩机的绝热效率。叶片扫掠已用于跨音速压缩机设计中,目的是减少冲击损失。在整个优化过程中,获得具有向后扫描的最佳形状。绝热效率是本优化的目标功能,成功提高了1.25%。与参考刀片相比,由于优化后的刀片,由于刀片吸力表面上的冲击和表面边界层之间的干扰而产生的分离线向下游移动。应当指出,优化叶片的绝热效率的提高是由于将分离线移动到叶片吸力表面上的下游引起的。

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