首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INFLUENCE OF COOLANT DENSITY ON TURBINE PLATFORM FILM-COOLING WITH STATOR-ROTOR PURGE FLOW AND COMPOUND-ANGLE HOLES
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INFLUENCE OF COOLANT DENSITY ON TURBINE PLATFORM FILM-COOLING WITH STATOR-ROTOR PURGE FLOW AND COMPOUND-ANGLE HOLES

机译:冷却液浓度对汽轮机冲流和复合角孔的涡轮平板膜冷却的影响

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A detailed parametric study of film-cooling effectiveness was carried out on a turbine blade platform. The platform was cooled by purge flow from a simulated stator-rotor seal combined with discrete hole film-cooling. The cylindrical holes and laidback fan-shaped holes were accessed in terms of film-cooling effectiveness. This paper focuses on the effect of coolant-to-mainstream density ratio on platform film-cooling (DR=1 to 2). Other fundamental parameters were also examined in this study - a fixed purge flow of 0.5%, three discrete-hole film-cooling blowing ratios between 1.0 and 2.0, and two freestream turbulence intensities of 4.2% and 10.5%. Experiments were done in a five-blade linear cascade with inlet and exit Mach number of 0.27 and 0.44, respectively. Reynolds number of the mainstream flow was 750,000 and wad based on the exit velocity and chord length of the blade. The measurement technique adopted was conduction-free pressure sensitive paint (PSP) technique. Results indicated that with the same density ratio, shaped holes present higher film-cooling effectiveness and wider film coverage than the cylindrical holes, particularly at higher blowing ratios. The optimum blowing ratio of 1.5 exists for the cylindrical holes, whereas the effectiveness for the shaped holes increases with increase of blowing ratio. Results also show that the platform film-cooling effectiveness increases with density ratio but decreases with turbulence intensity.
机译:在涡轮叶片平台上进行了薄膜冷却效果的详细参数研究。平台通过模拟定子-转子密封件的吹扫流与不连续的孔膜冷却相结合而冷却。就膜冷却效果而言,接近了圆柱形孔和后备扇形孔。本文着重研究冷却剂与主流密度比对平台薄膜冷却(DR = 1至2)的影响。在这项研究中还检查了其他基本参数-固定吹扫流量为0.5%,三个离散孔薄膜冷却吹气比在1.0和2.0之间,以及两个自由流湍流强度分别为4.2%和10.5%。实验是在五叶片线性叶栅中进行的,入口和出口马赫数分别为0.27和0.44。主流的雷诺数为750,000,根据叶片的出口速度和弦长来计算。所采用的测量技术是无导电压敏涂料(PSP)技术。结果表明,在相同的密度比下,异形孔比圆柱形孔具有更高的薄膜冷却效率和更宽的薄膜覆盖率,尤其是在较高的吹塑比下。圆柱孔的最佳吹塑比为1.5,而异形孔的效率随吹塑比的增加而增加。结果还表明,平台膜的冷却效率随密度比的增加而增加,但随着湍流强度的减小而减小。

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