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Rotordynamic Analysis and Redesign of High-Pressure Turbine Test Rig

机译:高压涡轮试验台的旋转动力学分析和重新设计

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The high-speed test rigs pose several operational problems originating from rotordynamics, bearings, lubrication and thermal gradients. When the critical speeds exist within the design speed, it is possible to accelerate the rotor through resonant speed zones in many applications. However, in very few cases, the resonance crossovers pose serious problems resulting from operational schedules and demand major modifications to rotor-bearing system. The design modifications, driven by rotordynamic considerations, carried out for an existing high-speed test rig with serious operability issues are presented in this paper. During operation, one of the bearings supporting the rotor has failed twice causing significant damages. On both occasions, the bearing failure took place when the rotor was approaching the first critical speed. Considering the difficulty experienced to pass the first critical speed quickly, the rotor-bearing system of the rig is completely redesigned with safe separation margin away from the design speed. Designer's challenges arising from overall layout, manufacturing, imported hardware, assembly and operation are highlighted while addressing the problem. The turbine stage could be tested successfully up to its design speed after implementing all design modifications.
机译:高速试验台占源自旋转动力学,轴承,润滑和热梯度的几个操作问题。当在设计速度内存在设计速度内时,可以通过许多应用中的谐振速度区域加速转子。然而,在很少的情况下,共振交叉造成严重的问题,从运营时间表产生,并且需要对转子系统进行重大修改。本文介绍了由具有严重可操作性问题的现有高速测试钻机进行的旋转动力学考虑因素驱动的设计修改。在操作期间,支撑转子的轴承之一失败了两次导致显着的损坏。在两个场合,当转子接近第一临界速度时,轴承故障发生了。考虑到难以快速传递第一临界速度的难度,钻机的转子系统完全重新设计,远离设计速度的安全分离边缘。设计师在解决问题时突出了整体布局,制造,进口硬件,装配和操作的挑战。在实现所有设计修改之后,可以在其设计速度成功地测试涡轮机级。

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