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Numerical Comparison of Rotordynamic Characteristics for a Fully-Partitioned Pocket Damper Seal and a Labyrinth Seal with High Positive and Negative Inlet Preswirl

机译:全分隔口袋阻尼器密封和带有高正负进气预涡流的迷宫式密封的转子动力学特性的数值比较

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Pocket damper seals are used as replacements for labyrinth seals in high-pressure centrifugal compressors at the balance piston location or center seal location to enhance rotordynamic stability. A concern exists that this enhanced stability will be lost at high positive inlet preswirl. Numerical results of frequency-dependent rotordynamic force coefficients and leakage flow rates were presented and compared for a fully-partitioned pocket damper seal (FPDS) and a labyrinth seal at high positive and negative inlet preswirl, using a proposed transient CFD method based on the multi-frequency elliptical orbit whirling model. The negative preswirl indicates a fluid swirl in a direction opposite to rotor rotation at seal inlet. Both seals have identical diameter and sealing clearance. The full 3D concentric CFD model and mesh were built for the labyrinth seal and FPDS, respectively. The accuracy and availability of the present transient CFD numerical method were demonstrated with the experiment data of frequency-dependent rotordynamic coefficients of the labyrinth seal and FPDS at zero and high positive preswirl conditions. The numerical boundary conditions include two high positive preswirl, two high negative preswirl and a zero preswirl. Numerical results show that the effect of inlet preswirl on the direct force coefficients is weak, but the effect on the cross-coupling stiffness and effective damping is dramatic. Both two seals possess negative effective damping at lower excitation frequencies due to positive preswirl, and the crossover frequency of effective damping term increases with increasing positive preswirl. Negative preswirl produces negative cross-coupling stiffness and positive effective damping over the whole excitation frequency range. Increasing negative preswirl is a stabilizing factor for annular gas seals which results in a significant increase in the effective damping and a decrease in the crossover frequency. It is desirable to reduce the inlet preswirl to zero or even negative through applications of negative-swirl brakes and negative injection devices.
机译:袋式阻尼器密封件在平衡活塞位置或中心密封位置处用作高压离心压缩机中迷宫式密封件的替代品,以增强转子的动力稳定性。存在这样的担忧,即,在高的正入口预旋流下会失去这种增强的稳定性。提出了一种基于频率的转子动力系数和泄漏流量的数值结果,并使用建议的基于多点输入的瞬态CFD方法,对高正负进气预旋流下的全分隔袋式阻尼器密封(FPDS)和迷宫式密封进行了比较。椭圆轨道回旋模型。负预旋流表示流体旋流的方向与密封件入口处的转子旋转方向相反。两种密封件的直径和密封间隙均相同。分别为迷宫式密封和FPDS构建了完整的3D同心CFD模型和网格。利用迷宫式密封件和FPDS的频率相关转子动力系数在零和高正预旋情况下的实验数据证明了当前瞬态CFD数值方法的准确性和可用性。数值边界条件包括两个高正预旋,两个高负预旋和零预旋。数值结果表明,入口预旋流对直接力系数的影响较弱,但对交叉耦合刚度和有效阻尼的影响却很大。由于正预涡流,两个密封件在较低的激励频率下均具有负有效阻尼,并且有效阻尼项的交叉频率随正预涡流的增加而增加。负预旋流会在整个励磁频率范围内产生负的交叉耦合刚度和正的有效阻尼。负预旋流的增加是环形气体密封件的稳定因素,这会导致有效阻尼的显着增加和交叉频率的降低。期望通过应用负涡旋制动器和负喷射装置将入口预涡流减小至零或什至为负。

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