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Experimental identification of fluid-induced force in labyrinth seals

机译:迷宫式密封件中流体感应力的实验识别

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摘要

The seal force is an important factor in turbomachineries. Therefore, the current paper puts forward an expanded seal force identification model. A seal test rig consisting of several sets of seals was prepared. Using the double-plane unbalance force identification theory in rotordynamics, the distributed seal force in the cylinder became equivalent to two selected planes. Considering the complex cylinder vibration with increasing rotating speed and inlet pressure, the cylinder was regarded as a vibration system with 4 degrees of freedom. The 4×4 impedance matrix was tested at the two selected planes using a shaker in two orthogonal directions. The equivalent seal force can be obtained by multiplying the impedance matrix with the measured change in the cylinder vibration. In the seal rig, tests were performed on the influence of inlet pressure, rotating speed, eccentricity ratio, rotor vibration, and clearance. The seal force increases almost linearly with the increasing inlet pressure, eccentricity ratio, and vibration amplitude. Furthermore, the seal force is strongly sensitive to the change in clearance between the cylinder and the rotating rotor. The phase difference between the seal force and the vibration influences the work done. If the phase difference is nearly 90°, then the work is at maximum. Moreover, the seal force applies positive force on the cylinder and negative force on the rotor.
机译:密封力是涡轮机械中的重要因素。因此,本文提出了一种扩展的密封力识别模型。准备了由几套密封件组成的密封测试设备。在转子动力学中使用双平面不平衡力识别理论,气缸中分布的密封力等于两个选定平面。考虑到随着转速和进气压力的增加而产生的复杂气缸振动,该气缸被视为具有4个自由度的振动系统。使用振荡器在两个正交方向上在两个选定平面上测试4×4阻抗矩阵。等效密封力可以通过将阻抗矩阵乘以测得的气缸振动变化来获得。在密封装置中,对进口压力,转速,偏心率,转子振动和间隙的影响进行了测试。密封力随着入口压力,偏心率和振动幅度的增加而线性增加。此外,密封力对气缸和旋转的转子之间的间隙变化非常敏感。密封力和振动之间的相位差会影响完成的工作。如果相位差接近90°,则功最大。而且,密封力在气缸上施加正力,在转子上施加负力。

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