涡轮机械叶片和叶轮模态参数辨识研究

Y. Kaneko, K. Mori, Furukawa Tatsuya
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引用次数: 1

摘要

为了开发高可靠性的涡轮机械叶片,必须对其在工作状态下的固有频率、阻尼、谐振应力等进行验证,并将这些数据用于新型叶片的机械设计。BTT(叶尖定时)和遥测系统已被广泛应用于涡轮机械叶片模态参数的测量。众所周知,在叶片转动模态参数的测量中,失谐现象给模态参数的识别带来了困难。也就是说,由于在失谐叶盘中,许多振动模态的响应是叠加的,因此很难正确识别每个振动模态的固有频率和阻尼。这是开发高可靠性叶片需要克服的关键问题之一。近年来,最小二乘复频域法(LSCF)作为一种从复杂频率响应中识别模态参数的有效方法被提出。该方法还应用于由行波坐标表示的频率响应推导出叶片盘的模态参数。本文通过数值模拟验证了LSCF方法的有效性,该方法通过由多个振型组成的频率响应识别失谐叶片盘的模态参数。此外,还研究了传统的半功率法识别叶片阻尼的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on identification of modal parameters of turbomachinery blade and impeller
To develop turbomachinery blades with high reliability, it is indispensable to verify the natural frequency, the damping, the resonant stress, etc. under operating condition, and utilize these data in the mechanical design of a new blade. BTT (Blade Tip Timing) and the telemetry system have been widely used to measure the modal parameters of turbomachinery blades. In measurement of the modal parameters of blades in rotation, it is well known that the mistuning phenomena make the identification of modal parameters difficult. Namely, because, in a mistuned bladed disk, responses of many vibration modes are superimposed, it becomes difficult to correctly identify the natural frequency and the damping of each vibration mode. This is one of the critical issues to be overcome for developing blades with high reliability. Recently LSCF(Least-Squares Complex Frequency-Domain)method has been proposed as an effective method for identifying the modal parameters from complicated frequency responses. This method was also applied to derive the modal parameters of a bladed disk from the frequency responses expressed by travelling wave coordinates. In this paper, the validity of the LSCF method is verified by numerical simulations, where the modal parameters of mistuned bladed disks are identified from the frequency responses consisting of many vibration modes. In addition, the accuracy of the conventional half power method used in identifying the blade damping is researched.
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