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Non-Contact Measurement of Blade Vibration in an Axial Compressor

机译:轴流压缩机中叶片振动的非接触式测量

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摘要

Complex blade responses such as a rotating stall or simultaneous resonances are common in modern engines and their observation can be a challenge even for state-of-the-art tip-timing systems and trained operators. This paper analyses forced vibrations of axial compressor blades, measured during the bench tests of the SO-3 turbojet. In relation to earlier studies conducted in Poland with a small number of sensors, a multichannel tip-timing system let us observe simultaneous responses or higher-order modes. To find possible symptoms of a failure, blade responses in a healthy and unhealthy engine configuration with an inlet blocker were studied. The used analysis methods covered all-blade spectrum and the circumferential fitting of blade deflections to the harmonic oscillator model. The Pearson coefficient of correlation between the measured and predicted tip deflection is calculated to evaluate fitting results. It helps to avoid common operator mistakes and misinterpreting the results. The proposed modal solver can track the vibration frequency and adjust the engine order on the fly. That way, synchronous and asynchronous vibrations are observed and analysed together with an extended variant of least squares. This approach saves a lot of work related to configuring the conventional tip-timing solver.
机译:复杂的叶片响应(例如旋转失速或同时发生的共振)在现代发动机中很常见,即使对于最新的尖端定时系统和训练有素的操作员来说,观察它们也可能是一个挑战。本文分析了在SO-3涡轮喷气发动机的台架试验期间测得的轴向压缩机叶片的强迫振动。与在波兰使用少量传感器进行的早期研究相比,多通道尖端定时系统可以让我们观察同时响应或高阶模式。为了发现故障的可能症状,研究了带有进气道阻塞器的健康和不健康发动机配置中的叶片响应。所使用的分析方法涵盖了全叶片频谱以及叶片挠度在谐波振荡器模型上的周向拟合。计算测得的和预测的尖端挠度之间的皮尔逊相关系数,以评估拟合结果。它有助于避免常见的操作员错误和对结果的误解。所提出的模态求解器可以跟踪振动频率并即时调整发动机顺序。这样,就可以观察和分析同步和异步振动以及最小二乘法的扩展变体。这种方法节省了许多与配置常规尖端定时求解器有关的工作。

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