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IDENTIFICATION OF SPEED-DEPENDENT BEARING COEFFICIENTS FROM UNBALANCE RESPONSES IN ONE TEST RUN

机译:在一次测试中,从失衡响应中识别出与速度有关的轴承系数

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It is well known that the bearing coefficients of oil film journal bearings are speed dependent. From the derivation of Tiwari et al., the numbers of unknown coefficients are twice the number of the equations relating to unbalance responses. That means at least two unbalance test runs are necessary to solve the bearing coefficients, no matter how many measurements are made, and the rotating machines have to stop once to adjust the unbalance configurations for the second test run. In this study, second order polynomials are assumed to fit the bearing coefficients in a specific speed range, and unbalance measurements are made at several rotating speeds in that speed range to solve for the polynomial coefficients. The advantages of this approach are that it fulfills the conditions of speed-dependent coefficients, the bearing coefficients can be obtained without stopping the machines, and on-line identification of bearing coefficients can be achieved. Noise reduction and interpolation for the bearing coefficients at other speeds can also be easily attained.
机译:众所周知,油膜轴颈轴承的轴承系数与速度有关。从Tiwari等人的推导中,未知系数的数量是与不平衡响应有关的方程式数量的两倍。这意味着至少要进行两次不平衡测试才能解决轴承系数,无论进行了多少次测量,旋转机械都必须停止一次以调整第二次测试的不平衡配置。在这项研究中,假定二阶多项式适合特定速度范围内的轴承系数,并且在该速度范围内的多个转速下进行不平衡测量以解决多项式系数。这种方法的优点是它可以满足与速度有关的系数的条件,可以在不停机的情况下获得轴承系数,并且可以在线识别轴承系数。还可以轻松实现降噪和以其他速度进行轴承系数的内插。

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