Numerical Investigations of Static and Dynamic Characteristics of a Novel Staggered Labyrinth Seal with Semi-Elliptical Structure

Shebin Yan, Zhifeng Ye, Dezhao Wang, Huihao Su, Wenjie Zhou
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Abstract

In order to optimize sealing performance, a novel labyrinth seal with semi-elliptical teeth (SET) structure is proposed in this paper, which includes semi-elliptical teeth and a series of cavities. The simulation results calculated by the numerical methods are compared with the experimental and theoretical results, and static and dynamic characteristics of the novel SET structure are further investigated. The numerical simulations of labyrinth seals with the SET structure demonstrate high accuracy and reliability, with a maximum relative error of less than 6% as compared to experimental results, underscoring the validity of the model. Notably, leakage rates are directly influenced by pressure drop and axial offset, with optimal sealing achieved at zero axial displacement. The direct damping coefficient increases as the pressure drop increases while the other dynamic coefficients decrease. Additionally, the stability results show that the novel SET structure exhibits higher stability for positive axial offsets. The novel model and corresponding results can provide a meaningful reference for the study of sealing structure and coupled vibration in the field of fluid machinery.
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带半椭圆结构的新型交错迷宫密封件静态和动态特性的数值研究
为了优化密封性能,本文提出了一种新型半椭圆齿迷宫密封(SET)结构,其中包括半椭圆齿和一系列空腔。将数值方法计算出的模拟结果与实验和理论结果进行了比较,并进一步研究了新型 SET 结构的静态和动态特性。采用 SET 结构的迷宫密封件的数值模拟结果表明,与实验结果相比,最大相对误差小于 6%,具有很高的准确性和可靠性,这突出表明了模型的有效性。值得注意的是,泄漏率直接受压降和轴向偏移的影响,在轴向位移为零时可达到最佳密封效果。直接阻尼系数随着压降的增大而增大,而其他动态系数则减小。此外,稳定性结果表明,新型 SET 结构在正轴向偏移时具有更高的稳定性。该新型模型和相应结果可为流体机械领域的密封结构和耦合振动研究提供有意义的参考。
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