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CAUSES OF ACOUSTIC RESONANCE IN A HIGH-SPEED AXIAL COMPRESSOR

机译:高速轴流压缩机中声共振的原因

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摘要

Non-harmonic acoustic resonance was detected in the static pressure and sound signals in a four-stage high-speed axial compressor when the compressor was operating close to the surge limit. Based on prior research reported in the literature and measurements of the resonance frequency, Mach number of the mean flow, and the axial and circumferential phase shift of the pressure signal during resonance it is shown that the acoustic resonance is an axial standing wave of a spinning acoustic mode with three periods around the circumference of the compressor. This phenomenon occurs only if the aerodynamic load in the compressor is high, because the mode needs a high circumferential Mach number for resonance conditions. Mathematics of existing analyses of acoustic resonances in turbomachinery are complex and have therefore rarely resulted in published examples of good agreement with real engine data. The present paper provides suitable, physically based simplifications of the existing mathematical models which are applicable for modes with circumferential wavelengths of more than two blade pitches and resonance frequencies considerably higher than the rotor speed.
机译:当四级高速轴流压缩机接近喘振极限运行时,在静压和声音信号中检测到非谐波声共振。根据文献中报道的先前研究以及共振频率,平均流量的马赫数以及共振期间压力信号的轴向和周向相移的测量结果,表明声共振是纺丝的轴向驻波围绕压缩机圆周的三个周期的声学模式。仅当压缩机中的空气动力学负载较高时,才会出现此现象,因为该模式在共振条件下需要较高的圆周马赫数。涡轮机械中现有的声共振分析的数学很复杂,因此很少产生与实际发动机数据良好吻合的已发布示例。本论文对现有数学模型进行了适当的基于物理的简化,适用于圆周波长大于两个叶片螺距且共振频率明显高于转子速度的模式。

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