首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >THE EXPERIMENTAL ROTORDYNAMIC STABILITY EVALUATION METHOD USING MAGNETIC EXCITATION SYSTEM FOR AN INTEGRALLY GEARED COMPRESSOR
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THE EXPERIMENTAL ROTORDYNAMIC STABILITY EVALUATION METHOD USING MAGNETIC EXCITATION SYSTEM FOR AN INTEGRALLY GEARED COMPRESSOR

机译:用于一体式齿轮压缩机磁激励系统的实验旋转动力稳定性评价方法

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In Turbomachinery the rotordynamic design is highly important to keep lower shaft vibration in the high speed rotating machinery for personal safety & machine protection. To resolve same, the authors have developed a direct rotor excitation technique using the magnetic exciters designed in-house. The development of compact magnetic exciters enables to be incorporated into the casing and can be an effective method of exciting rotor vibration modes. Four magnetic exciters are installed facing the back side of an integrally geared compressor impeller in the circumferential direction. Test procedure implemented a rotational excitation method to excite forward mode and backward mode independently based on phase controlled magnet currents. In this case rotor has totally ten shaft vibration sensors which detect the rotor vibration modes excited by magnetic excitation technique. The directional frequency response functions (dFRFs) are separate results of forward mode component and backward mode component included in FRF. It achieves more accurate modal analysis to obtain natural frequency and log decrement. The dFRFs with rotational excitation denotes enough amplitude response and thus the magnetic excitation method proves to be more effective. This study successfully carry's out the measurement of natural frequencies and log decrements of operating rotor. The comparison test results of tilting pad journal bearing (TPJB) with and without the integral squeeze film damper (ISFD), that show the ISFD reduces natural frequency and considerably increases log decrements. These test results demonstrated the effectiveness of the developed rotor excitation method for integrally geared compressor pinion rotors.
机译:在涡轮机械中,旋转动力学设计非常重要,可以在高速旋转机械中保持较低的轴振动进行个人安全和机器保护。为了解决同样的解决,作者使用内部设计的磁振动仪开发了一种直接转子励磁技术。紧凑型磁激励器的开发使能够结合到壳体中,并且可以是激发转子振动模式的有效方法。四个磁激励器在圆周方向上朝向整体齿轮压缩机叶轮的后侧安装。测试程序实现了旋转激励方法,以基于相位控制的磁体电流独立地刺穿前向模式和向后模式。在这种情况下,转子具有完全十个轴振动传感器,其检测由磁激励技术激发的转子振动模式。定向频率响应函数(DFRF)是FRF中包括的前向模式分量和后向模式分量的单独结果。它达到了更准确的模态分析,以获得自然频率和日志递减。具有旋转激励的DFRF表示足够的幅度响应,因此磁激励方法证明是更有效的。这项研究成功携带了测量自然频率和操作转子的降低。倾斜垫轴颈轴承(TPJB)的比较测试结果,而没有整体挤压膜阻尼器(ISFD),显示ISFD降低了自然频率,显着提高了日志递减。这些测试结果证明了开发转子激励方法的有效性,用于整体齿轮压缩机小齿轮转子。

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