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INVERSE DESIGN OF 3D COMPRESSOR BLADES WITH AN ADJOINT METHOD

机译:带伴随方法的3D压缩机刀片的逆设计

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A three-dimensional (3D) CFD-based design method for high-speed axial compressor blades is being developed based on the discrete adjoint method. An adjoint code is built corresponding to RVC3D, a 3D turbomachinery Navier-Stokes analysis code developed at NASA Glenn. A validation study with the Euler equations indicates that the adjoint sensitivities are sensitive to the choice of boundary conditions for the adjoint variables in internal flow problems and constraints may be needed on internal boundaries to capture proper physics of the adjoint system. The design method is demonstrated with inverse design based on Euler physics, and the results indicate that the adjoint design method produces efficient 3D designs by drastically reducing the computational cost.
机译:基于离散伴随方法开发了一种基于高速轴向压缩机刀片的三维(3D)CFD的设计方法。与RVC3D相对应建立伴随码,在NASA Glenn开发的3D涡轮机械Navier-Stokes分析代码。具有欧拉方程的验证研究表明,伴随敏感性对内部流动问题中的伴随变量的边界条件的选择敏感,并且内部边界可能需要约束,以捕获伴随系统的适当物理。基于欧拉物理学的逆设计对设计方法进行了说明,结果表明伴随设计方法通过大大降低计算成本,产生有效的3D设计。

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