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Experimental Investigation of Louver Cooling Scheme on Gas Turbine Stator

机译:燃气轮机定子百叶窗冷却方案的实验研究

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摘要

An experimental investigation has been conducted to investigate the film cooling performance of the louver scheme over the surface of a gas turbine stator using a transient thermochromic liquid crystal technique. A two-dimensional airfoil cascade has been employed during the study. The exit Reynolds number based on the true chord length is 1.5E5 and the exit Mach number is 0.23. Two rows of an axially oriented louver scheme are distributed on both suction and pressure sides in a staggered arrangement. The effect of hole location on the cooling performance is investigated for each row individually; then row interaction is investigated at four different blowing ratios ranging from 1 to 2 and a 0.9 density ratio. The detailed local performance distribution and the lateral-averaged normalized performance are presented over both sides of the vane in terms of heat transfer coefficient and cooling effectiveness. The louver scheme provides a better cooling performance compared with the similar cylindrical scheme of the same base diameter at the same cooling amount. The blowing ratio does not influence significantly the performance for the louver scheme due to the considerable decrease in the jet momentum that impedes the jet lift-off at exit. The location of the scheme exit has a high impact on the cooling performance as it affects the development of the boundary layer. The double injection on the pressure side provides a superior effectiveness due to the blockage of the mainstream by the coolant injected from the first row. The louver scheme provides higher net heat flux reduction, which suits the cooling capacity needed for the next generation of gas turbines.
机译:已经进行了实验研究,以使用瞬态热致变色液晶技术研究百叶窗方案在燃气轮机定子表面上的冷却性能。在研究过程中采用了二维翼型叶栅。基于真实和弦长度的出口雷诺数为1.5E5,出口马赫数为0.23。两排轴向定向的百叶窗方案以交错布置分布在吸力和压力侧。分别研究每排孔位置对冷却性能的影响;然后以1至2和0.9的密度比的四种不同的吹风比研究行相互作用。根据传热系数和冷却效率,在叶片的两侧均显示了详细的局部性能分布和横向平均归一化性能。与在相同冷却量下具有相同基座直径的类似圆柱形方案相比,百叶窗方案提供了更好的冷却性能。吹气比不会显着影响百叶窗方案的性能,因为射流动量的显着下降会阻止出口处的射流升起。方案出口的位置对冷却性能有很大影响,因为它会影响边界层的发展。由于从第一排喷射的冷却剂阻塞了主流,因此在压力侧的双喷射提供了卓越的效果。百叶窗方案可提供更高的净热通量降低,从而适合下一代燃气轮机所需的冷却能力。

著录项

  • 来源
    《Heat Transfer Engineering 》 |2016年第4期| 82-105| 共24页
  • 作者单位

    Department of Mechanical and Industrial Engineering, Concordia University, Montreal, Canada;

    Mechanical Engineering Department, Texas A&M University at Qatar, Doha, Qatar,Department of Mechanical and Industrial Engineering, Concordia University, 1515 St. Catherine W., EV4.139, Montreal, Quebec, Canada H3G 1M8;

    Department of Mechanical and Industrial Engineering, Concordia University, Montreal, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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