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Development of a PVDF Sensor Array for Measurement of the Dynamic Pressure Field of the Blade Tip in an Axial Flow Compressor

机译:开发PVDF传感器阵列,用于测量轴流压缩机中的叶片尖端的动态压力场

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Tip clearance flow in axial flow compressor is unavoidable and responsible for pressure losses and noise generation and influences the stability of the compressor. However, necessary flow measurement in the blade tip region is a great challenge due to the small gap width as well as the structure limitation. In this paper, a polyvinylidene fluoride (PVDF) piezoelectric-film sensor array is developed to capture the dynamic pressure field over the blade tip in an axial flow compressor. The PVDF sensor array with 40 evenly distributed sensing points is fabricated directly on a 30 m thick aluminum-metalized polarized PVDF film through photolithography. Dynamic calibration of the sensor is accomplished using acoustic source as excitation and a microphone as a reference. The test pressure range is up to 3.5 kPa and the sampling frequency is 20 kHz. The sensor presents a high signal-to-noise ratio and good consistency with the reference microphone. Sensitivity, frequency response, linearity, hysteresis, repeatability as well as the influence of temperature are also investigated through the calibration apparatus. The calibration gives credence to the relevance and reliability of this sensor for the application in dynamic pressure field measurement. The sensor is then applied to an actual measurement in a compressor. The output of the PVDF sensor array is also compared with the results of common pressure transducers, and the features of the dynamic pressure filed are discussed. The results indicate that the PVDF sensor array is capable of the dynamic pressure field measurement over the blade tip, and superior to the conventional approaches in installation, spatial resolution, frequency response, and cost. These advantages indicate its potential broad application in pressure measurement, especially for the complex spatial surface or thin-walled structure, such as the blade surface and the thin casing wall of the compressor.
机译:轴流压缩机中的尖端间隙流动是不可避免的,负责压力损耗和噪声产生,并影响压缩机的稳定性。然而,由于小间隙宽度以及结构限制,叶片尖端区域中的必要流量测量是一个很大的挑战。在本文中,开发了聚偏二氟乙烯(PVDF)压电膜传感器阵列以在轴流压缩机中捕获叶片上的动态压力场。具有40个均匀分布式感测点的PVDF传感器阵列直接通过光刻在30m厚的铝金属化偏振PVDF膜上制造。传感器的动态校准是使用声学来源作为激励和麦克风来完成的。测试压力范围高达3.5kPa,采样频率为20 kHz。传感器呈现出高信噪比和与参考麦克风的良好一致性。通过校准装置还研究了灵敏度,频率响应,线性,滞后,可重复性以及温度的影响。校准将此传感器的相关性和可靠性提供了在动态压力场测量中应用的应用。然后将传感器应用于压缩机中的实际测量。与公共压力换能器的结果相比,PVDF传感器阵列的输出也与普通压力传感器的结果进行了比较,并且讨论了动态压力的特征。结果表明,PVDF传感器阵列能够通过叶片尖端的动态压力场测量,并且优于安装,空间分辨率,频率响应和成本中的传统方法。这些优点表明其在压力测量中的潜在广泛应用,特别是对于复杂的空间表面或薄壁结构,例如叶片表面和压缩机的薄壳壁。

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