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NOZZLE GUIDE VANE STATIC STRIP SEALS

机译:喷嘴导向叶片静密封条

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摘要

Sealing of components where there is no relative motion between the elements concerned remains a significant challenge in many gas turbine engine applications. Loss of sealing and cooling air from the internal air system through seals impacts on specific fuel consumption and can lead to undesirable flow interactions with resultant cost implications. For gas turbines, various strip seal types have been developed for use between Nozzle Guide Vanes in order to limit the flow of gas between the main stream annulus and the internal air system. Many different types of design have been proposed for overcoming strip seal problems such as misalignment of the grooves due to manufacturing and assembly constraints. In this paper various methods, with a particular focus on patents, for minimising the amount of leakage caused by such problems for strip seals between nozzle guide vanes are reviewed. By considering the advantages and disadvantages of each technique it is concluded that although apparently new strip seal designs for NGVs have improved performance, none of them can be considered to be ideal. This paper reviews the techniques and makes recommendations for future designs.
机译:在许多燃气涡轮发动机应用中,在相关元件之间没有相对运动的情况下密封部件仍然是一个重大挑战。内部空气系统通过密封件造成的密封和冷却空气的流失会影响特定的燃料消耗,并可能导致不良的气流相互作用,进而导致成本问题。对于燃气轮机,已经开发出各种类型的密封条用于喷嘴导流叶片之间,以限制主流气环和内部空气系统之间的气体流量。已经提出了许多不同类型的设计来克服条带密封问题,例如由于制造和组装限制而导致的槽的未对准。在本文中,对各种方法进行了审查,尤其是针对专利的方法,以最小化由喷嘴导叶之间的条形密封件的此类问题引起的泄漏量。通过考虑每种技术的优缺点,可以得出结论,尽管显然新的用于NGV的条形密封设计提高了性能,但没有一个可以被认为是理想的。本文回顾了这些技术,并为以后的设计提出了建议。

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