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A Systematic Approach to Estimate the Impact of the Aerodynamic Force Induced by Rotating Stall in a Vaneless Diffuser on the Rotordynamic Behavior of Centrifugal Compressors

机译:一种估计无叶片扩压器中的旋转失速所产生的空气动力对离心压缩机的旋转动力学行为影响的系统方法

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One of the main challenges of the present industrial research on centrifugal compressors is the need for extending the left margin of the operating range of the machines. As a result, interest is being paid to accurately evaluating the amplitude of the pressure fluctuations caused by rotating stall, which usually occurs prior to surge. The related aerodynamic force acting on the rotor can produce subsynchronous vibrations, which can prevent the machine's further operation, in case their amplitude is too high. These vibrations are often contained due to the stiffness of the oil journals. Centrifugal compressor design is, however, going towards alternative journal solutions having lower stiffness levels (e.g., active magnetic bearings or squeeze film dampers), which will be more sensitive to this kind of excitation: consequently, a more accurate estimation of the expected forces in the presence of dynamic external forces such as those connected to an aerodynami-cally unstable condition is needed to predict the vibration level and the compressor oper-ability in similar conditions. Within this scenario, experimental tests were carried out on industrial impellers operating at high peripheral Mach numbers. The dedicated test rig was equipped with several dynamic pressure probes that were inserted in the gas flow path; moreover, the rotor vibrations were constantly monitored with typical vibration probes located near the journal bearings. The pressure field induced by the rotating stall in the vaneless diffuser was reconstructed by means of an ensemble average approach, thus defining the amplitude and frequency of the external force acting on the impeller. The calculated force value was then included in the rotordynamic model of the test rig: the predicted vibrations on the bearings were compared with the measurements, showing satisfactory agreement. Moreover, the procedure was applied to two real multistage compressors, showing notable prediction capabilities in the description of rotating stall effects on the machine rotordynamics. Finally, the prospects of the proposed approach are discussed by investigating the response of a real machine in high-pressure functioning when different choices of journal bearings are made.
机译:当前关于离心式压缩机的工业研究的主要挑战之一是需要扩大机器的工作范围的左边距。结果,引起人们的兴趣是精确地评估由旋转失速引起的压力波动的幅度,旋转失速通常发生在喘振之前。作用在转子上的相关空气动力会产生次同步振动,如果振幅过高,则可能会阻止电机继续运行。由于油轴颈的刚度,通常会抑制这些振动。但是,离心式压缩机的设计正朝着具有较低刚度水平的替代轴颈解决方案(例如,主动磁性轴承或挤压膜阻尼器)发展,这将对这种激励更加敏感:因此,可以更准确地估算出需要动态外力的存在,例如那些与空气动力学不稳定的条件有关的外力,以预测相似条件下的振动水平和压缩机的可操作性。在这种情况下,对在高外围马赫数下运行的工业叶轮进行了实验测试。专用的测试台配备了数个动压探头,这些探头插入了气体流路中。此外,转子振动是通过位于轴颈轴承附近的典型振动探头不断进行监测的。通过整体平均方法重建了无叶扩压器中旋转失速引起的压力场,从而确定了作用在叶轮上的外力的幅度和频率。然后将计算出的力值包括在试验台的转子动力学模型中:将轴承上的预测振动与测量值进行比较,显示出令人满意的一致性。此外,该程序已应用于两个实际的多级压缩机,在描述旋转失速对机器转子动力学的影响时显示出显着的预测能力。最后,通过研究当选择不同的轴颈轴承时,真实机器在高压运行中的响应,讨论了该方法的前景。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2013年第11期|112502.1-112502.9|共9页
  • 作者单位

    Department of Industrial Engineering,University of Florence,Via di Santa Marta 3,Firenze 50139, Italy;

    Department of Industrial Engineering,University of Florence,Via di Santa Marta 3,Firenze 50139, Italy;

    Department of Industrial Engineering,University of Florence,Via di Santa Marta 3,Firenze 50139, Italy;

    CNR-ICCOM,National Research Council of Italy,Via Madonna del Piano 10,Sesto Fiorentino 50019, Italy;

    GE Oil & Gas,Via Felice Matteucci 2,Florence 50127, Italy;

    GE Oil & Gas,Via Felice Matteucci 2,Florence 50127, Italy;

    GE Oil & Gas,Via Felice Matteucci 2,Florence 50127, Italy;

    GE Oil & Gas,Via Felice Matteucci 2,Florence 50127, Italy;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:21:16

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