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Redesign of Axial Fan Using Viscous Inverse Design Method Based on Boundary Vorticity Flux Diagnosis

机译:利用基于边界涡流通量诊断的粘性逆设计方法重新设计轴向风扇

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摘要

The inverse design method for turbomachinery can directly acquire a blade geometry with specific aerodynamic parameters, such as pressure loading on the blade surfaces. The difference between the inverse design and direct analysis design is that the management of the flow field is controlled by aerodynamic parameters instead of geometric parameters. Although the inverse design has been studied since the 1940s, it is far from being mature enough in comparison with the analysis method. In this work, the inverse problem method is improved by two aspects: the calculation accuracy and the strategy to determine the pressure loading distribution. The application of a high-quality mesh auto-generation and deformation technique to the inverse design is introduced. The no-slip wall boundary conditions, similar to the analysis model, and high-quality mesh, enable the use of an advanced turbulence model in the inverse design. These methods improve the accuracy of the inverse design. The loading distribution in the inverse design is obtained based on the boundary vorticity flux diagnosis. An axial fan is redesigned as an example of the inverse design method. The internal flow loss analysis based on the entropy production theory verifies the effectiveness of the inverse design used in this study.
机译:涡轮机械的逆设计方法可以直接获取具有特定空气动力学参数的刀片几何形状,例如叶片表面上的压力负载。逆设计和直接分析设计之间的差异是流场的管理由空气动力学参数而不是几何参数控制。虽然自20世纪40年代以来已经研究了逆设计,但与分析方法相比,它远远不够成熟。在这项工作中,通过两个方面提高了逆问题方法:计算精度和确定压力负载分布的策略。介绍了高质量网格自动生成和变形技术对逆设计的应用。无滑动墙边界条件,类似于分析模型和高质量网格,使得在逆设计中使用先进的湍流模型。这些方法提高了逆设计的准确性。基于边界涡流通量诊断获得逆设计中的装载分布。作为逆设计方法的示例重新设计了轴向风扇。基于熵生产理论的内部流量损失分析验证了本研究中使用的逆设计的有效性。

著录项

  • 来源
    《Journal of turbomachinery》 |2021年第5期|051006.1-051006.11|共11页
  • 作者单位

    School of Energy and Power Engineering Huazhong University of Science and Technology Wuhan 430074 China;

    School of Energy and Power Engineering Huazhong University of Science and Technology Wuhan 430074 China;

    School of Energy and Power Engineering Huazhong University of Science and Technology Wuhan 430074 China;

    School of Energy and Power Engineering Huazhong University of Science and Technology Wuhan 430074 China;

    School of Energy and Power Engineering Huazhong University of Science and Technology Wuhan 430074 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    computational fluid dynamics (CFD); fan; compressor; turbine aerodynamic design; turbomachinery blading design;

    机译:计算流体动力学(CFD);扇子;压缩机;涡轮机空气动力学设计;涡轮机械炸融设计;

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