首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >ROTORDYNAMIC CHARACTERIZATION OF A STAGGERED LABYRINTH SEAL: EXPERIMENTAL TEST DATA AND COMPARISON WITH PREDICTIONS
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ROTORDYNAMIC CHARACTERIZATION OF A STAGGERED LABYRINTH SEAL: EXPERIMENTAL TEST DATA AND COMPARISON WITH PREDICTIONS

机译:交错式拉贝林密封圈的转子动力学特性:实验数据和预测值的比较

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摘要

As well known, the stability assessment of turbomachines is strongly related to internal sealing components. For instance, labyrinth seals are widely used in compressors, steam and gas turbines and pumps to control the clearance leakage between rotating and stationary parts, owing to their simplicity, reliability and tolerance to large thermal and pressure variations. Labyrinth seals working principle consists in reducing the leakage by imposing tortuous passages to the fluid that are effective on dissipating the kinetic energy of the fluid from high-pressure regions to low-pressure regions. Conversely, labyrinth seals could lead to dynamics issues. Therefore, an accurate estimation of their dynamic behavior is very important. In this paper, the experimental results of a long-staggered labyrinth seal will be presented. The results in terms of rotordynamic coefficients and leakage will be discussed as well as the critical assessment of the experimental measurements. Eventually, the experimental data are compared to numerical results obtained with the new bulk-flow model (BFM) introduced in this paper.
机译:众所周知,涡轮机的稳定性评估与内部密封部件密切相关。例如,迷宫式密封件由于其简单性,可靠性以及对大的热和压力变化的耐受性,被广泛用于压缩机,蒸汽和燃气轮机以及泵中,以控制旋转和固定部件之间的间隙泄漏。迷宫式密封件的工作原理在于通过在流体上设置曲折通道来减少泄漏,该曲折通道可有效地将流体的动能从高压区域耗散到低压区域。相反,迷宫式密封可能会导致动力学问题。因此,准确估计其动态行为非常重要。在本文中,将介绍长交错迷宫式密封的实验结果。将讨论转子动力系数和泄漏方面的结果,以及对实验测量结果的严格评估。最终,将实验数据与本文介绍的新的整体流模型(BFM)获得的数值结果进行比较。

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