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Experimental frequency-dependent rotordynamic coefficients for a load-on-pad, high-speed, flexible-pivot tilting-pad bearing

机译:垫上负载,高速,灵活枢轴式可倾瓦轴承的实验频率相关转子动力系数

摘要

This thesis provides experimental frequency dependent stiffness and damping coefficient results for a high-speed, lightly loaded, flexible-pivot tilting-pad bearing, with a load-on-pad configuration. Test conditions include four shaft speeds (6000, 9000, 13000 and 16000 rpm), and bearing unit loads from 172 kPa to 690 kPa. The results show that the bearing stiffness is a quadratic function of the frequency of vibration; hence their frequency dependency can be modeled by added-mass terms. The additional degrees of freedom introduced by the pads and the influence of the inertial forces generated in the fluid film account for this frequency dependency. The conventional frequency-dependent stiffness and damping model for tilting-pad bearings is extended with an added-mass matrix to account for the frequency dependency. This approach allows the description of the bearing dynamic characteristics with frequency-independent stiffness, damping and added-mass matrices. Experimental results are compared with predictions from the Reynolds equation and from a bulk-flow Navier-Stokes model. Both models produce good predictions of the stiffness and damping coefficients. However, results show that the bulk-flow model is more adequate for predicting the direct added-mass terms because it accounts for the fluid inertial forces. A bulk-flow solution of the Navier-Stokes equations that includes the effects of fluid inertia should be used to calculate the rotordynamic coefficients of a flexible-pivot tilting-bearing. Static performance measurement results are also detailed. Results include pad metal temperatures, eccentricity-ratios and attitude-angle as a function of bearing load, and estimated power losses.
机译:本文为具有轻载载荷配置的高速,轻载,柔性枢轴可倾瓦轴承提供了实验频率相关的刚度和阻尼系数结果。测试条件包括四个轴转速(6000、9000、13000和16000 rpm),轴承单元负载为172 kPa至690 kPa。结果表明,轴承刚度是振动频率的二次函数。因此,它们的频率依赖性可以通过附加质量项来建模。由垫引入的附加自由度和在流体膜中产生的惯性力的影响解释了这种频率依赖性。倾斜垫轴承的传统频率相关刚度和阻尼模型通过附加质量矩阵进行扩展,以解决频率相关性问题。这种方法可以用频率无关的刚度,阻尼和附加质量矩阵来描述轴承的动态特性。将实验结果与雷诺方程和大流量Navier-Stokes模型的预测结果进行比较。两种模型都可以很好地预测刚度和阻尼系数。但是,结果表明,大流量模型更适合预测直接附加质量项,因为它考虑了流体惯性力。应使用包含流体惯性影响的Navier-Stokes方程的整体流解决方案来计算挠性枢轴倾斜轴承的转子动力系数。静态性能测量结果也很详细。结果包括垫金属温度,偏心率和姿态角与轴承负载的关系,以及估计的功率损耗。

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