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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Rotordynamic Evaluation of Centrifugal Compressor Using Electromagnetic Exciter
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Rotordynamic Evaluation of Centrifugal Compressor Using Electromagnetic Exciter

机译:基于电磁激励器的离心压缩机转子动力学评估

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摘要

Since heavier gases exert larger effects on rotordynamic stability, stability evaluation is important in developing or designing high-pressure compressors. To evaluate the rotor stability during operation, an excitation test using a magnetic bearing is the most practical method. In stability analysis, labyrinth seals can produce significant cross coupling forces, which particularly reduce the damping ratio of the first forward mode. Therefore, forward modes should be distinguished from backward modes in the excitation test. One method that excites only the forward modes, not the backward modes (and vice versa), is the use of a rotating excitation. In this method, the force is simultaneously applied to two axes to excite the rotor in circular orbits. Two trigonometric functions, i.e., cosine and sine functions, are used to generate this rotation force. Another method is the use of a unidirectional excitation and a mathematical operation to distinguish the forward whirl from the backward whirl. In this method, a directional frequency response function that separates the two modes in the frequency domain is obtained from four frequency response functions by using a complex number expression for the rotor motion. In this study, the latter method was employed to evaluate the rotor stability of a high-pressure compressor. To obtain the frequencies and damping ratios of the eigenvalues, the curve fitting based on system identification methods, such as the prediction error method, was introduced for the derived frequency response functions. Firstly, these methods were applied to a base evaluation under a low-pressure gas operation, in which the stability mainly depends on the bearing property. Using the obtained results, the bearing coefficients were estimated. Next, the same methods were applied to stability evaluations under high-pressure gas operations. The destabilizing forces were also estimated from the test results and compared with the calculation results.
机译:由于较重的气体会对转子动态稳定性产生更大的影响,因此稳定性评估对于开发或设计高压压缩机非常重要。为了评估转子在运行过程中的稳定性,最实用的方法是使用电磁轴承进行励磁测试。在稳定性分析中,迷宫式密封件会产生很大的横向耦合力,特别是会降低第一前进模态的阻尼比。因此,在励磁测试中应将正向模式与反向模式区分开。仅激励正向模式而不激励反向模式(反之亦然)的一种方法是使用旋转激励。在这种方法中,力同时施加到两个轴上,以沿圆形轨道激励转子。两个三角函数,即余弦和正弦函数,用于生成此旋转力。另一种方法是使用单向激励和数学运算来区分前向旋转和后向旋转。在该方法中,通过使用转子运动的复数表达式从四个频率响应函数中获得在频域中将两种模式分开的定向频率响应函数。在这项研究中,后一种方法用于评估高压压缩机的转子稳定性。为了获得特征值的频率和阻尼比,针对导出的频率响应函数引入了基于系统识别方法(例如预测误差方法)的曲线拟合。首先,将这些方法应用于低压气体操作下的基础评估,其中稳定性主要取决于轴承性能。使用获得的结果,估计轴承系数。接下来,将相同的方法应用于高压气体操作下的稳定性评估。还从测试结果中估计了破坏力,并将其与计算结果进行了比较。

著录项

  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2012年第3期|p.032505.1-032505.7|共7页
  • 作者单位

    Tsuchiura Research Laboratory,Research & Development Group,Hitachi Plant Technologies, Ltd.,603 Kandatsu-machi, Tsuchiura-shi,Ibaraki-ken, 300-0013, Japan;

    3rd Department,Mechanical Engineering Research Center,Hitachi Research Laboratory,Hitachi, Ltd.,832-2 Horiguchi, Hitachinaka-shi,Ibaraki-ken, 312-0034, Japan;

    Compressor Division,Social Infrastructure & Industrial Machinery System Group,Hitachi Plant Technologies, Ltd.,603 Kandatsu-machi, Tsuchiura-shi,Ibaraki-ken, 300-0013, Japan;

    Compressor Division,Social Infrastructure & Industrial Machinery System Group,Hitachi Plant Technologies, Ltd.,603 Kandatsu-machi, Tsuchiura-shi,Ibaraki-ken, 300-0013, Japan;

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

    vibration; experimental; stability; system identification; forward/backward mode;

    机译:振动;实验稳定性;系统识别;前进/后退模式;

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