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首页> 外文期刊>Inverse Problems in Science & Engineering >An inverse design method for viscous flow in turbomachinery blading using a wall virtual movement
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An inverse design method for viscous flow in turbomachinery blading using a wall virtual movement

机译:利用壁虚拟运动的涡轮叶片中粘性流的逆设计方法

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摘要

An inverse shape design method for turbomachinery blades based on a time-accurate solution of the viscous flow equations is presented. The design scheme is formulated such that either the blade pressure distributions on pressure and suction surfaces, or the blade pressure loading and its thickness distribution can be prescribed as design variables. The blade profile is modified using a virtual velocity distribution that would make the momentum flux on the blade surfaces equal to the design momentum flux. The flow is simulated by solving the Reynolds-averaged Navier-Stokes equations that are discretized using a cell vertex finite-volume method, where an arbitrary Lagrangian-Eulerian formulation is used to account for mesh movement. An algebraic Baldwin-Lomax model is used for turbulence closure. The inverse method is first validated for a transonic compressor cascade; it is then used to redesign a subsonic turbine and a transonic compressor. The results show that the design method is rather robust, flexible and useful in reshaping the blade geometry to achieve the prescribed design variables. They also indicate that by carefully tailoring the design target, significant improvement can be achieved in the blade aerodynamic performance.
机译:提出了一种基于粘性流方程时间精确解的涡轮机械叶片逆形状设计方法。制定设计方案,以便可以将叶片在压力和吸力表面上的压力分布或叶片压力负荷及其厚度分布规定为设计变量。使用虚拟速度分布修改叶片轮廓,该分布将使叶片表面上的动量通量等于设计动量通量。通过求解使用单元顶点有限体积方法离散化的雷诺平均Navier-Stokes方程来模拟流动,其中使用任意的Lagrangian-Eulerian公式说明网格运动。代数Baldwin-Lomax模型用于湍流封闭。首先对跨音速压缩机级联验证了逆方法。然后用于重新设计亚音速涡轮机和跨音速压缩机。结果表明,该设计方法相当健壮,灵活并且在重塑叶片几何形状以实现规定的设计变量方面很有用。他们还指出,通过仔细调整设计目标,可以显着改善叶片的空气动力性能。

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