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ROTOR STABILITY EVALUATION FOR HIGH PRESSURE MULTI-STAGE PUMP BY EXCITATION DIAGNOSIS METHOD

机译:通过励磁诊断方法对高压多级泵的转子稳定性评价

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High pressure multi-stage pump is one of the most important machinery in various plants. Due to the high rotational speed, there are cases where excessive vibration problems occur. Especially, the self-excited vibration arises from the fluid force, which exists within the clearance of the oil film bearings and balancing drum (annular seal). In order to evaluate the rotor system stability, we developed an excitation method based on Bently-Muszynska model, and applied this method to the air test and water test. Through the test results, the onset (threshold) of instability (self-excited vibration) can be evaluated by the rotor system natural frequency and the fluid average angular circumferential velocity within the clearance of the bearings and balancing drum. Moreover, the balancing drum had a significant effect on the rotor stability, and the resulting frequency of the self-excited vibration matched the fluid average angular circumferential velocity in the balancing drum.
机译:高压多级泵是各种植物中最重要的机器之一。由于高转速,存在过度振动问题的情况。特别地,自激振动由流体力产生,该流体力存在于油膜轴承和平衡鼓(环形密封)的间隙内。为了评估转子系统稳定性,我们开发了一种基于Bental-Muszynska模型的励磁方法,并将这种方法应用于空气测试和水测试。通过测试结果,可以通过转子系统固有频率和轴承间隙的间隙内的转子系统固有频率和流体平均角周速度来评估发作(自激振动)的开始(阈值)。此外,平衡滚筒对转子稳定性具有显着影响,并且自激振动的所得到的频率与平衡鼓中的流体平均角周速匹配。

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