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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Improving the Film Cooling of a Rotor Blade Platform
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Improving the Film Cooling of a Rotor Blade Platform

机译:改善转子叶片平台的薄膜冷却

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This paper shows the results of an experimental activity developed in cooperation between Ansaldo Energia and the Department of Engineering and Applied Science of Bergamo University with the aim of assessing the impact of newly designed holes on the thermal protection of a rotor blade platform. The original rotor blade platform featured ten cylindrical holes located along the blade pressure side (PS). Moreover, the channel front side was cooled exploiting the seal purge flow exiting the stator to rotor interface gap. The front midchannel, and particularly the region around the interplatform gap, remained uncooled. To protect this region, two sets of cylindrical holes were designed and manufactured on a seven blade cascade model for experimental verification. Aerodynamic and thermal tests were carried out at low Mach number. To evaluate the interaction of injected flow with secondary flows a five hole probe was traversed downstream of the trailing edge plane. The thermal behavior was analyzed by using thermochromic liquid crystals technique, so to obtain film cooling effectiveness distributions. The seven-hole configuration coupled with a low blowing ratio of about 1.0 provided the best thermal protection without any impact on the aerodynamic performance.
机译:本文展示了在Ansaldo Energia和Bergamo大学工程系和应用科学系之间的合作开发的实验活动的结果,目的是评估新设计孔对转子刀片平台的热保护的影响。原始转子刀片平台沿着叶片压力侧(PS)位于10个圆柱形孔。此外,冷却通道前侧利用离开定子以转子界面间隙的密封吹扫流动。前沿中间沟槽,特别是跨窗形间隙周围的区域仍然未加热。为了保护该区域,设计了两组圆柱形孔,并在七个刀片级联模型上设计和制造进行实验验证。在低马赫数进行空气动力学和热试验。为了评估具有次级流动的注入流的相互作用,在后缘平面的下游穿过五个孔探针。通过使用热致变色的液晶技术来分析热能,从而获得薄膜冷却效果分布。具有低吹气比约为1.0的七孔配置提供了最佳的热保护,而不会对空气动力学性能产生任何影响。

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