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首页> 外文期刊>Journal of turbomachinery >Heat Transfer and Film Cooling on a Contoured Blade Endwall With Platform Gap Leakage
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Heat Transfer and Film Cooling on a Contoured Blade Endwall With Platform Gap Leakage

机译:平台间隙泄漏的轮廓叶片端壁上的传热和薄膜冷却

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摘要

Turbine blade components in an engine are typically designed with gaps between parts due to manufacturing, assembly, and operational considerations. Coolant is provided to these gaps to limit the ingestion of hot combustion gases. The interaction of the gaps, their leakage flows, and the complex vortical flow at the endwall of a turbine blade can significantly impact endwall heat transfer coefficients and the effectiveness of the leakage flow in providing localized cooling. In particular, a platform gap through the passage, representing the mating interface between adjacent blades in a wheel, has been shown to have a significant effect. Other important turbine blade features present in the engine environment are nonaxisymmetric contouring of the endwall, and an upstream rim seal with a gaspath cavity, which can reduce and increase endwall vortical flow, respectively. To understand the platform gap leakage effect in this environment, measurements of end-wall heat transfer, and film cooling effectiveness were performed in a scaled blade cascade with a nonaxisymmetric contour in the passage. A rim seal with a cavity, representing the overlap interface between a stator and rotor, was included upstream of the blades and a nominal purge flowrate of 0.75% of the mainstream was supplied to the rim seal. The results indicated that the endwall heat transfer coefficients increased as the platform gap net leakage increased from 0% to 0.6% of the mainstream flowrate, but net heat flux to the endwall was reduced due to high cooling effectiveness of the leakage flow.
机译:出于制造,组装和运行方面的考虑,发动机中的涡轮叶片部件通常设计成零件之间具有间隙。向这些间隙提供冷却剂以限制热燃烧气体的摄入。间隙的相互作用,其泄漏流以及涡轮叶片端壁处的复杂涡流会显着影响端壁传热系数以及泄漏流在提供局部冷却方面的有效性。特别地,已经表明,穿过通道的平台间隙具有显着的效果,该间隙代表车轮中相邻叶片之间的配合界面。发动机环境中存在的其他重要涡轮叶片特征是端壁的非轴对称轮廓,以及带有气路腔的上游轮辋密封,可以分别减少和增加端壁的涡流。为了了解在这种环境下平台间隙泄漏的影响,在通道中具有非轴对称轮廓的成比例的叶片级联中进行了端壁传热和薄膜冷却效率的测量。叶片上游包括带有空腔的轮辋密封件,代表定子和转子之间的交叠界面,并且向轮辋密封件供应了主流的0.75%的额定吹扫流量。结果表明,随着平台间隙净泄漏量从主流流量的0%增加到0.6%,端壁传热系数增加,但是由于泄漏流的高冷却效率,导致端壁的净热通量降低。

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  • 来源
    《Journal of turbomachinery》 |2017年第5期|051002.1-051002.10|共10页
  • 作者单位

    Engineering Department, The Pennsylvania State University, University Park, PA 16802;

    Engineering Department, The Pennsylvania State University, University Park, PA 16802;

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  • 正文语种 eng
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