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Combined pressure and temperature distortion effects on internal flow of a turbofan engine

机译:压力和温度畸变的综合影响对涡扇发动机内部流动的影响

摘要

An additional data base for improving and verifying a computer simulation developed by an engine manufacturer was obtained. The multisegment parallel compressor simulation was designed to predict the effects of steady-state circumferential inlet total-pressure and total-temperature distortions on the flows into and through a turbofan compression system. It also predicts the degree of distortion that will result in surge of the compressor. The effect of combined 180 deg square-wave distortion patterns of total pressure and total temperature in various relative positions is reported. The observed effects of the combined distortion on a unitary bypass ratio turbofan engine are presented in terms of total and static pressure profiles and total temperature profiles at stations ahead of the inlet guide vanes as well as through the fan-compressor system. These observed profiles are compared with those predicted by the complex multisegment model. The effects of relative position of the two components comprising the combined distortion on the degree resulting in surge are discussed. Certain relative positions required less combined distortion than either a temperature or pressure distortion by itself.
机译:获得了用于改进和验证由发动机制造商开发的计算机仿真的其他数据库。多段并联压缩机模拟旨在预测稳态周向入口总压和总温度畸变对流入和通过涡轮风扇压缩系统的流量的影响。它还可以预测导致压缩机喘振的变形程度。报告了在各个相对位置上总压力和总温度的组合180度方波畸变图样的影响。组合畸变对整体式旁通比涡轮风扇发动机产生的影响以进气导向叶片前方以及通过风扇压缩机系统的总静压力曲线和总温度曲线表示。将这些观察到的轮廓与通过复杂多段模型预测的轮廓进行比较。讨论了包括组合失真的两个分量的相对位置对导致浪涌的程度的影响。某些相对位置所需的组合变形要比温度或压力变形本身少。

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