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An Accelerating Sweep Frequency Excitation Method for the Rotordynamic Coefficients Identification of Annular Gas Seals Based on Computational Fluid Dynamics

机译:基于计算流体动力学的环形气密封的旋转动力系数识别加速扫描频率激励方法

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摘要

This article proposes a rotordynamic identification method using the accelerating sweep frequency excitation method. The computational fluid dynamics transient solution combined with the moving grid method is utilized to obtain the transient flow field of the seal excited by the whirling rotor with an accelerating frequency. Rotordynamic coefficients at swept frequencies are obtained by analyzing the transient response force acting on the rotor. Rotordynamic coefficients of three published experimental seals including a labyrinth seal, a fully partitioned pocket damper seal and a honeycomb seal are identified to validate the proposed method. The results show that the predicted rotordynamic coefficients are all well agreement with the trend of experimental data. Compared with the existing numerical models based on transient solutions, the central processing unit consumption of the proposed method is substantially reduced by 98% when achieving the same frequency resolution. In addition, the impact of the exciting acceleration on the identification accuracy is also illustrated.
机译:本文提出了一种使用加速扫描频率激励方法的旋转动力学识别方法。利用与移动栅格方法组合的计算流体动力学瞬态溶液来获得由旋转转子激发的密封件的瞬态流场,其具有加速频率。通过分析作用在转子上的瞬态响应力来获得扫描频率的旋转动力系数。识别包括迷宫式袋密封的三个公开的实验密封件,包括迷宫式口袋阻尼密封和蜂窝密封,以验证所提出的方法。结果表明,预测的旋转动力系数与实验数据的趋势很好。与基于瞬态解决方案的现有数值模型相比,在实现相同的频率分辨率时,所提出的方法的中央处理单元消耗基本上减少了98%。此外,还示出了激发加速度对识别准确度的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2021年第9期|091021.1-091021.10|共10页
  • 作者单位

    National Engineering Research Center of Turbo-Generator Vibration School of Energy and Environment Southeast University Sipailou 2# Nanjing Jiangsu Province 210096 China;

    National Engineering Research Center of Turbo-Generator Vibration School of Energy and Environment Southeast University Sipailou 2# Nanjing Jiangsu Province 210096 China;

    School of Energy and Power Engineering Institute of Fluid Machinery and Engineering University of Shanghai for Science and Technology No. 516 Jungong Road Shanghai 200093 China;

    National Engineering Research Center of Turbo-Generator Vibration School of Energy and Environment Southeast University Sipailou 2# Nanjing Jiangsu Province 210096 China;

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