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Experimental investigations on the frequency of partial surge

机译:局部浪涌频率的实验研究

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Partial surge is characterized by axisymmetric low-frequency disturbance localized in the hub region and with the potential risk of causing full compressor instability in a transonic axial flow compressor. To find out what determines the low frequency of partial surge, most typical vibro-acoustic frequencies in the test compressor system are first examined, and the observed frequency of partial surge is found to be the closest to the Helmholtz frequency estimated with Greitzer's duct-compressor-plenum model. Experiments are then conducted to observe the frequency of partial surge during the evolution of instability in the same compressor system with varied lengths of compressor inlet duct and inlet duct in front of the settling chamber and at the same rotor speed. The result also suggests that the dominant frequency of partial surge can be determined by the Helmholtz frequency of the system. When the length of compressor inlet duct is increased beyond a critical range, a different type of system oscillation is also observed in the form of a disturbance at higher frequency. The occurrence of this disturbance is discussed in this article with an extended theory of system oscillation.
机译:局部喘振的特征是位于轮毂区域的轴对称低频扰动,并具有导致跨音速轴流式压缩机中压缩机完全不稳定的潜在风险。为了找出决定局部喘振低频的因素,首先检查了测试压缩机系统中最典型的振动声频率,发现所观察到的局部喘振频率最接近使用格瑞泽管道压缩机估算的亥姆霍兹频率-plenum模型。然后进行实验,以观察在同一压缩机系统中,在压缩机室的进气管和沉降室前面的进气管长度不同且转子转速相同的情况下,在不稳定性演变过程中部分喘振的频率。该结果还表明,部分电涌的主导频率可以由系统的亥姆霍兹频率确定。当压缩机进口管道的长度增加到超过临界范围时,还会以较高频率的干扰形式观察到不同类型的系统振荡。本文使用扩展的系统振荡理论讨论了这种干扰的发生。

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