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Stator re-stagger optimization in multistage axial compressor

机译:多级轴流式压缩机中的定子再错错优化

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摘要

As a widely applied technique in multistage axial compressors, variable stator vanes (VSV) can flexibly rematch the blade rows to fulfil a variety of aerodynamic performance requirements, such as high efficiency and wide surge margin. The purpose of this paper is to develop an optimization method to quickly determine VSV settings during the preliminary design phase. A mean-line method with a model calibration procedure is adopted to evaluate compressor performance, and the NSGA-II algorithm is employed for automatic optimization. The developed optimization system is then employed to determined re-stagger arrangement in a multistage compressor. A single-speed optimization with performance constraints of specific operating point and a multi-speed optimization with different control laws are conducted. Results are compared with available experimental re-stagger scheme, which verifies the effectiveness of the re-stagger optimization method. Moreover, method is proposed to determine operating parameters of a working point with a user-defined pressure ratio or mass flow rate after variable geometry.
机译:作为多级轴流式压缩机中广泛应用的技术,可变定子叶片 (VSV) 可以灵活地重新匹配叶片排,以满足各种空气动力学性能要求,例如高效率和宽浪涌裕量。本文的目的是开发一种优化方法,以便在初步设计阶段快速确定VSV设置。采用模型标定程序的平均线法对压缩机性能进行评价,并采用NSGA-II算法进行自动优化。然后,利用开发的优化系统来确定多级压缩机中的重新错开布置。在特定工作点的性能约束下进行单速优化,在不同控制规律下进行多速优化。将结果与现有的实验重新交错方案进行了比较,验证了重新交错优化方法的有效性。此外,还提出了一种在可变几何形状下确定具有用户定义的压力比或质量流量的工作点的工作参数的方法。

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