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New step to improve the accuracy of blade tip timing method without once per revolution

机译:无需每转一次即可提高叶片尖端计时方法精度的新步骤

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摘要

The mechanical vibration has always been one of the main factors that restrict the improvement of turbomachinery performance such as aero-engines. Blade vibration is one of the most important obstacle. As a non-intrusive vibration measurement method, blade tip timing (BTT) technology has the potential to replace strain gauges for blade dynamic stress monitoring. However, it still faces enormous challenges, one of which is the accuracy and reliability of the once per revolution (OPR) probe. Here, an efficient and high-precision compound reference (CR) based BTT method without OPR is proposed. The method is based on straight line fitting (SLF), and taking the blade at the midpoint of the SLF interval as the reference blade. The vibration displacement of the reference blade is obtained by the SLF of the time of arrival (ToA) of probe No. 1. Further, taking the blade as the reference, the vibration displacement of other blades is obtained. With this method, the actual blade installation angle and the probe installation angle can be measured simultaneously based on the none OPR method so as to further improving the measurement accuracy. By the numerical simulation, high speed test-rig and large scale industry turbo fan verification, the results indicate that the method has the merit of stronger anti-noise ability, less uncertainty, and much higher computational efficiency. Whereby, high-efficiency blade vibration measurement can be achieved in the whole operating speed range.
机译:机械振动一直是限制诸如航空发动机之类的涡轮机械性能提高的主要因素之一。刀片振动是最重要的障碍之一。作为一种非侵入式振动测量方法,叶片尖端正时(BTT)技术有可能取代用于叶片动态应力监测的应变仪。但是,它仍然面临着巨大的挑战,其中之一就是每转一次(OPR)探针的准确性和可靠性。在此,提出了一种不带OPR的高效高精度的基于BTT的BTT方法。该方法基于直线拟合(SLF),并以SLF间隔中点处的刀片作为参考刀片。通过1号探针的到达时间(ToA)的SLF获得基准叶片的振动位移。此外,以叶片为基准,获得其他叶片的振动位移。利用这种方法,可以基于无OPR方法同时测量实际的刀片安装角度和探头安装角度,从而进一步提高测量精度。通过数值模拟,高速试验台和大型工业涡轮风扇验证,结果表明该方法具有抗噪能力强,不确定性小,计算效率高的优点。由此,可以在整个运转速度范围内实现高效的叶片振动测量。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2019年第1期|106321.1-106321.19|共19页
  • 作者单位

    Chemical Safety Engineering Research Center of the Ministry of Education Beijing University of Chemical Technology Beijing 100029 PR China;

    Chemical Safety Engineering Research Center of the Ministry of Education Beijing University of Chemical Technology Beijing 100029 PR China Beijing Key Laboratory of Health Monitoring and Self-recovery for High-end Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 PR China;

    Beijing Key Laboratory of Health Monitoring and Self-recovery for High-end Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Blade vibration; None OPR BTT; Compound reference; Uncertainty; Straight line fitting;

    机译:叶片振动;无OPR BTT;复合参考;不确定;直线拟合;

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