首页> 外文会议>ASME turbo expo >MEASURED AND PREDICTED TRANSFER FUNCTIONS BETWEEN ROTOR MOTION AND PAD MOTION FOR A ROCKER-BACK TILTING-PAD BEARING IN LOP CONFIGURATION
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MEASURED AND PREDICTED TRANSFER FUNCTIONS BETWEEN ROTOR MOTION AND PAD MOTION FOR A ROCKER-BACK TILTING-PAD BEARING IN LOP CONFIGURATION

机译:LOP配置中摇臂-后倾式垫板轴承转子运动和垫板运动之间的测量和预测传递函数

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Many researchers have compared predicted stiffness and damping coefficients for tilting-pad journal bearings (TPJBs) to measurements. Most have found that direct damping is consistently overpredicted. Continuing to test TBJBs in the same fashion is not likely to produce an explanation for the discrepancies between measured and predicted damping. Most analytical models for TPJBs are based on the assumption that explicit dependence on pad motion can be eliminated by assuming a solution for rotor motion such that the amplitude and phase of pad motions are predicted by rotor-pad transfer functions. Direct measurements of pad motion during test excitation are needed to produce measured transfer functions between rotor and pad motion, and a comparison between these measurements and predictions is needed to identify model discrepancies. A test setup was designed to fulfill these objectives. Motion probes were added to the loaded pad to obtain accurate measurement of pad radial and tangential motion, as well as tilt, yaw and pitch. For the remainder of this work, the loaded pad refers to the pad whose pivot sits on the static load line. Testing was performed primarily at low speeds and high loads, since this is the operating region for which predictions are most erroneous. Single frequency excitations were performed ranging from 10-350 Hz, producing rotor and pad motion, acceleration, and force vectors. This motion was used to determine frequency-dependent bearing impedances and rotor-pad transfer functions. A new pad perturbation model is proposed including the effects of pad angular, radial, and circumferential pad motion. This model was implemented in a Reynolds-based TPJB code to predict the frequency-dependent bearing impedances and rotor-pad transfer functions. These predictions are compared with measurements and discussed. Good agreement was found between the amplitude of the measured and predicted transfer functions concerning tilt and radial motions for low to moderate loads, but deviated in accuracy at the highest loaded case. Circumferential (sliding) pad motion was predicted and observed; however, the effect of this degree of freedom on dynamic bearing coefficients has not been quantitatively assessed. For the bearing investigated, radial motion accounted for more than 67% of total motion of the fluid-film height at the leading and trailing edges of the pad when operating at 4400 rpm under heavily loaded conditions. The measurements show that predicting TPJB stiffness and damping coefficients without accounting for pad pivot deformation will not produce satisfactory outcomes.
机译:许多研究人员已将可倾瓦轴颈轴承(TPJB)的预测刚度和阻尼系数与测量值进行了比较。大多数人发现直接阻尼一直被高估。继续以相同的方式测试TBJB不太可能对测得的阻尼和预测的阻尼之间的差异产生解释。 TPJB的大多数分析模型都基于这样的假设:可以通过假设转子运动的解决方案来消除对衬块运动的明确依赖性,从而通过转子-衬块传递函数来预测衬块运动的幅度和相位。需要在测试激励期间直接测量垫运动,以产生转子和垫运动之间的测量传递函数,并且需要在这些测量值和预测值之间进行比较,以识别模型差异。设计了测试装置来实现这些目标。将运动探针添加到已加载的垫板中,以精确测量垫板的径向和切向运动以及倾斜,偏航和俯仰。在本工作的其余部分中,加载的垫是指其枢轴位于静态载荷线上的垫。测试主要是在低速和高负载下进行的,因为这是最错误的预测操作区域。进行10-350 Hz范围内的单频激励,产生转子和轴瓦运动,加速度和力矢量。该运动用于确定频率相关的轴承阻抗和转子-垫传递函数。提出了一种新的垫块摄动模型,该模型包括垫块角度,径向和周向垫块运动的影响。该模型是在基于雷诺(Reynolds)的TPJB代码中实现的,以预测频率相关的轴承阻抗和转子-垫传递函数。将这些预测与测量结果进行比较并进行讨论。在低至中度载荷下,测得的传递函数的幅度与预测的传递函数的幅度之间存在很好的一致性,涉及倾斜和径向运动,但在最高载荷情况下,其精度存在偏差。可以预测并观察到圆周(滑动)垫的运动;但是,这种自由度对动态轴承系数的影响尚未得到定量评估。对于所研究的轴承,在重载条件下以4400 rpm运行时,径向运动占液垫前缘和后缘液膜高度总运动的67%以上。测量结果表明,在不考虑轴瓦枢轴变形的情况下预测TPJB刚度和阻尼系数将不会产生令人满意的结果。

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