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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experiments on an Axial Fan Stage: Time-Resolved Analysis of Rotating Instability Modes
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Experiments on an Axial Fan Stage: Time-Resolved Analysis of Rotating Instability Modes

机译:轴流风机台上的实验:旋转不稳定性模式的时间分辨分析

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摘要

Rotating instability (RI) occurs at off-design conditions in axial compressors, predominantly in rotor configurations with large tip clearances. Characteristic spectral signatures with side-by-side peaks below the blade passing frequency (BPF) are typically referred to RI located in the clearance region next to the leading edge (LE). Each peak can be assigned to a dominant circumferential mode. RI is the source of the clearance noise (CN) and an indicator for critical operating conditions. Earlier studies at an annular cascade pointed out that RI modes of different circumferential orders occur stochastically distributed in time and independently from each other, which is contradictory to existing explanations of RI. Purpose of the present study is to verify this generally with regard to axial rotor configurations. Experiments were conducted on a laboratory axial fan stage mainly using unsteady pressure measurements in a sensor ring near the rotor LE. A mode decomposition based on cross spectral matrices was used to analyze the spectral and modal RI patterns upstream of the rotor. Additionally, a time-resolved analysis based on a spatial discrete-Fourier-transform (DFT) was applied to clarify the temporal characteristics of the RI modes and their potential interrelations. The results and a comparison with the previous findings on the annular cascade corroborate a new hypothesis about the basic RI mechanism. This hypothesis implies that instability waves of different wavelengths are generated stochastically in a shear layer resulting from a backflow in the tip clearance region.
机译:旋转不稳定性(RI)在轴流式压缩机的非设计条件下发生,主要发生在具有大叶尖间隙的转子配置中。具有在刀片通过频率(BPF)以下的并排峰的特征光谱特征通常称为RI,位于靠近前缘(LE)的间隙区域中。可以将每个峰分配给主导圆周模式。 RI是间隙噪声(CN)的来源,并且是关键运行条件的指示器。早期关于环形叶栅的研究指出,不同圆周顺序的RI模式在时间上是随机分布的并且彼此独立,这与RI的现有解释相矛盾。本研究的目的是就轴向转子配置大致验证这一点。实验是在实验室轴流风机平台上进行的,主要是在转子LE附近的传感器环中使用非恒定压力测量。基于交叉谱矩阵的模式分解用于分析转子上游的频谱和模式RI模式。此外,基于空间离散傅立叶变换(DFT)的时间分辨分析用于阐明RI模式的时间特性及其潜在的相互关系。结果和与先前关于环形叶栅的发现的比较证实了有关基本RI机理的新假设。该假设暗示,由于尖端间隙区域中的回流,在剪切层中随机产生了不同波长的不稳定性波。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第6期|062505.1-062505.9|共9页
  • 作者单位

    Engine Acoustics Department, German Aerospace Center (DLR), Institute of Propulsion Technology, Mueller-Breslau-Strasse 8, Berlin 10623, Germany;

    Engine Acoustics Department, German Aerospace Center (DLR), Institute of Propulsion Technology, Mueller-Breslau-Strasse 8, Berlin 10623, Germany;

    Engine Acoustics Department, German Aerospace Center (DLR), Institute of Propulsion Technology, Mueller-Breslau-Strasse 8, Berlin 10623, Germany;

    Engine Acoustics Department, German Aerospace Center (DLR), Institute of Propulsion Technology, Mueller-Breslau-Strasse 8, Berlin 10623, Germany;

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