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Aerodynamic Analysis and Three-Dimensional Redesign of a Multi-Stage Axial Flow Compressor

机译:多级轴流压缩机的空气动力学分析和三维重新设计

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This paper describes the introduction of three-dimension (3-D) blade designs into a 5-stage axial compressor with multi-stage computational fluid dynamic (CFD) methods. Prior to a redesign, a validation study is conducted for the overall performance and flow details based on full-scale test data, proving that the multi-stage CFD applied is a relatively reliable tool for the analysis of the follow-up redesign. Furthermore, at the near stall point, the aerodynamic analysis demonstrates that significant separation exists in the last stator, leading to the aerodynamic redesign, which is the focus of the last stator. Multi-stage CFD methods are applied throughout the three-dimensional redesign process for the last stator to explore their aerodynamic improvement potential. An unconventional asymmetric bow configuration incorporated with leading edge re-camber and re-solidity is employed to reduce the high loss region dominated by the mainstream. The final redesigned version produces a 13% increase in the stall margin while maintaining the efficiency at the design point.
机译:本文介绍了将三维(3-D)叶片设计引入具有多级计算流体动力学(CFD)方法的5级轴向压缩机。在重新设计之前,会根据全面测试数据对整体性能和流程细节进行验证研究,证明所应用的多级CFD是用于后续重新设计分析的相对可靠的工具。此外,在失速点附近,空气动力学分析表明最后一个定子中存在明显的分离,从而导致空气动力学的重新设计,这是最后一个定子的重点。在最后一个定子的整个三维重新设计过程中应用了多阶段CFD方法,以探索其空气动力学改进的潜力。采用非常规的不对称弓形结构并结合了前缘的重新弯曲和重新坚固性,以减少主流所占的高损耗区域。最终重新设计的版本使失速裕度增加了13%,同时保持了设计点的效率。

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