首页> 外文会议>ASME TURBO exposition >ROTORDYNAMIC PERFORMANCE OF A ROTOR SUPPORTED ON BUMP TYPE FOIL GAS BEARINGS: EXPERIMENTS AND PREDICTIONS
【24h】

ROTORDYNAMIC PERFORMANCE OF A ROTOR SUPPORTED ON BUMP TYPE FOIL GAS BEARINGS: EXPERIMENTS AND PREDICTIONS

机译:支撑在凸块型箔燃气轴承上的转子的旋转动力学性能:实验和预测

获取原文

摘要

Gas foil bearings (GFBs) satisfy the requirements for oil-free turbomachinery, i.e. simple construction and ensuring low drag friction and reliable high speed operation. However, GFBs have a limited load capacity and minimal damping, as well as frequency and amplitude dependent stiffness and damping characteristics. This paper provides experimental results of the rotordynamic performance of a small rotor supported on two bump-type GFBs of length and diameter equal to 38.10 mm. Coast down rotor responses from 25 krpm to rest are recorded for various imbalance conditions and increasing air feed pressures. The peak amplitudes of rotor synchronous motion at the system critical speed are not proportional to the imbalance introduced. Furthermore, for the largest imbalance, the test system shows subsynchronous motions from 20.5 krpm to 15 krpm with a whirl frequency at ~ 50% of shaft speed. Rotor imbalance exacerbates the severity of subsynchronous motions, thus denoting a forced nonlinearity in the GFBs. The rotor dynamic analysis with calculated GFB force coefficients predicts a critical speed at 8.5 krpm, as in the experiments; and importantly enough, unstable operation in the same speed range as the test results for the largest imbalance. Predicted imbalance responses do not agree with the rotor measurements while crossing the critical speed, except for the lowest imbalance case. Gas pressurization through the bearings' side ameliorates rotor subsynchronous motions and reduces the peak amplitudes at the critical speed. Post-test inspection reveal wear spots on the top foils and rotor surface.
机译:燃气箔轴承(GFBS)满足无油涡轮机的要求,即简单的施工,确保低阻力摩擦和可靠的高速运行。然而,GFB具有有限的负载能力和最小阻尼,以及频率和幅度相关的刚度和阻尼特性。本文提供了在长度和直径的两个凸块GFB上支撑的小转子的旋转动力学性能的实验结果,等于38.10mm。在各种不平衡条件下记录25 krpm休息的沿着转子响应,并增加空气进料压力。在系统临界速度下的转子同步运动的峰值幅度与引入的不平衡不成比例。此外,对于最大的不平衡,测试系统将来自20.5 krpm至15 krpm的子同步运动,旋转〜50%的旋转频率。转子不平衡加剧了子同步运动的严重程度,从而表示GFB中的强制非线性。具有计算的GFB力系数的转子动态分析预测8.5 krpm的临界速度,如实验中;重要的是,与最大不平衡的测试结果相同的速度范围内的不稳定操作不稳定。除了最低不平衡壳体之外,预测的不平衡响应不同时与转子测量相一致。通过轴承的侧面气体加压改善转子次同步运动,并以临界速度降低峰值幅度。测试后检查显示顶部箔片和转子表面上的磨损斑点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号