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Brush seals and labyrinth seals in gas turbine applications

机译:燃气轮机应用中的电刷密封和迷宫式密封

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摘要

The overall efficiency of gas turbines is strongly affected by the performance of the sealing arrangement between the stationary and rotary components. Maintaining an accurate clearance during nominal and transient operation and providing effective damping is of key importance for seal designers. The implementation of brush seals as an alternative to labyrinth seals in a gas turbine engine is outlined in this article. A review of published literature is performed to analyze the leakage performance of brush seals and labyrinth seals. The emphasis lies on the importance of an accurate clearance control and the subsequent reduction in parasitic flows. Based on a discussion of the performance and integrity of brush seals in gas turbine applications their advantages over labyrinth seals are highlighted. Some attention is drawn into common drawbacks of brush seals and how these were improved over time to become more competitive and reliable. Finally, advanced concepts, technological aspects of the design of the brush seals influencing their leakage characteristics and future applications prospective are discussed. It was shown that one of the key advantages of brush seals over conventional labyrinth seals is their positive rotordynamic characteristic. The rotordynamic force coefficients demonstrate very low and generally negative cross-coupled stiffness thereby positively affecting the turbomachine operability in industrial gas turbine applications. The review concluded the need for further work on studying rotordynamic behaviour of brush seals operating at conditions more realistic to real engine operation environment in order to complete the understanding of the seal dynamics in real operation condition.
机译:固定组件和旋转组件之间的密封装置性能会严重影响燃气轮机的整体效率。对于密封设计人员而言,在标称和瞬态操作期间保持准确的间隙并提供有效的阻尼至关重要。本文概述了在燃气涡轮发动机中采用刷式密封替代迷宫式密封的方法。进行了文献综述,以分析刷式密封和迷宫式密封的泄漏性能。重点在于准确控制间隙并随后减少寄生流量的重要性。在对燃气轮机应用中的电刷密封件的性能和完整性进行讨论的基础上,突出了它们比迷宫式密封件的优势。人们注意到了电刷密封的常见缺陷,以及如何随着时间的推移改进这些缺陷以使其更具竞争力和可靠性。最后,讨论了电刷密封件设计的先进概念,影响其泄漏特性的技术方面以及未来的应用前景。结果表明,相比传统的迷宫式密封,电刷密封的主要优势之一是其积极的转子动力学特性。转子动力力系数显示出非常低的且通常为负的交叉耦合刚度,从而对工业燃气轮机应用中的涡轮机可操作性产生积极影响。审查得出结论,需要进行进一步研究以研究在更接近实际发动机运行环境的条件下运行的电刷密封圈的转子动力学行为,以便全面了解实际运行条件下的密封圈动力学。

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