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Film-Cooling Effectiveness on a Gas Turbine Blade Tip Using Pressure-Sensitive Paint

机译:使用压敏涂料的燃气轮机叶片尖端的薄膜冷却效果

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摘要

Effects of the presence of squealer, the locations of the film-cooling holes, and the tip-gap clearance on the film-cooling effectiveness were studied and compared to those for a plane (flat) tip. The film-cooling effectiveness distributions were measured on the blade tip using the pressure-sensitive paint technique. Air and nitrogen gas were used as the film-cooling gases, and the oxygen concentration distribution for each case was measured. The film-cooling effectiveness information was obtained from the difference of the oxygen concentration between air and nitrogen gas cases by applying the mass transfer analogy. Plane tip and squealer tip blades were used while the film-cooling holes were located (a) along the camber line on the tip or (b) along the tip of the pressure side. The average blowing ratio of the cooling gas was 0.5, 1.0, and 2.0. Tests were conducted with a stationary, five-bladed linear cascade in a blow-down facility. The free-stream Reynolds number, based on the axial chord length and the exit velocity, was 1,138,000, and the inlet and the exit Mach numbers were 0.25 and 0.6, respectively. Turbulence intensity level at the cascade inlet was 9.7%. All measurements were made at three different tip-gap clearances of 1%, 1.5%, and 2.5% of blade span. Results show that the locations of the film-cooling holes and the presence of squealer have significant effects on surface static pressure and film-cooling effectiveness, with film-cooling effectiveness increasing with increasing blowing ratio.
机译:研究了尖叫器的存在,薄膜冷却孔的位置以及尖端间隙对薄膜冷却效率的影响,并将其与平面(平坦)尖端的影响进行了比较。使用压敏涂料技术在叶片尖端上测量薄膜冷却效率分布。将空气和氮气用作膜冷却气体,并测量每种情况下的氧浓度分布。通过应用传质类似物,从空气箱和氮气箱之间的氧气浓度差异获得薄膜冷却效果信息。当薄膜冷却孔位于(a)沿尖端的外倾线或(b)沿压力侧的尖端定位时,使用了平面尖端和squealer尖端叶片。冷却气体的平均吹送比为0.5、1.0和2.0。在排污设施中使用固定的五叶片线性叶栅进行了测试。基于轴向弦长和出口速度,自由流雷诺数为1,138,000,入口和出口马赫数分别为0.25和0.6。级联入口处的湍流强度水平为9.7%。所有测量均在叶片跨度的1%,1.5%和2.5%三种不同的间隙中进行。结果表明,薄膜冷却孔的位置和刮油器的存在对表面静压和薄膜冷却效率有显着影响,薄膜冷却效率随吹塑比的增加而增加。

著录项

  • 来源
    《Journal of Heat Transfer》 |2005年第5期|p.521-530|共10页
  • 作者单位

    Turbine Heat Transfer Laboratory, Department of Mechanical Engineering, Texas A&M University College Station, Texas 77843-3123;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 热力工程、热机;
  • 关键词

  • 入库时间 2022-08-18 00:27:52

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