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Aerodynamic and Heat Flux Measurements in a Single-Stage Fully Cooled Turbine-Part II: Experimental Results

机译:单级全冷涡轮的空气动力学和热通量测量-第二部分:实验结果

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摘要

This paper presents measurements and the companion computational fluid dynamics (CFD) predictions for a fully cooled, high-work single-stage HP turbine operating in a short-duration blowdown rig. Part I of this paper (Haldeman, C. W., Mathison, R. M., Dunn, M. G., Southworth, S. A., Harral, J. W., and Heltland, G., 2008, ASME J. Turbom-ach., 130(2), p. 021015) presented the experimental approach, and Part II focuses on the results of the measurements and demonstrates how these results compare to predictions made using the Numeca FINE/Turbo CFD package. The measurements are presented in both time-averaged and time-accurate formats. The results include the heat transfer at multiple spans on the vane, blade, and rotor shroud as well as flow path measurements of total temperature and total pressure. Surface pressure measurements are available on the vane at midspan, and on the blade at 50% and 90% spans as well as the rotor shroud. In addition, temperature and pressure measurements obtained inside the coolant cavities of both the vanes and blades are presented. Time-averaged values for the surface pressure on the vane and blade are compared to steady CFD predictions. Additional comparisons will be made between the heat transfer on cooled blades and uncooled blades with identical surface geometry. This, along with measurements of adiabatic wall temperature, will provide a basis for analyzing the effectiveness of the film cooling scheme at a number of locations.
机译:本文介绍了在短时排污装置中运行的全冷却,高功单级HP涡轮机的测量值和伴随的计算流体动力学(CFD)预测。本文的第一部分(Haldeman,CW,Mathison,RM,Dunn,MG,Southworth,SA,Harral,JW,and Heltland,G.,2008,ASME J.Turbom-ach。,130(2),p.021015 )介绍了实验方法,第二部分重点介绍了测量结果,并展示了这些结果与使用Numeca FINE / Turbo CFD软件包做出的预测结果的比较。测量以时间平均和时间精确的格式表示。结果包括叶片,叶片和转子护罩上多个跨度上的传热,以及总温度和总压力的流路测量。可在中跨的叶片上以及跨度为50%和90%的叶片上以及转子护罩上进行表面压力测量。此外,还介绍了在叶片和叶片的冷却剂腔内获得的温度和压力测量值。将叶片和叶片上的表面压力的时间平均值与稳定的CFD预测进行比较。将在冷却叶片和具有相同表面几何形状的非冷却叶片上的传热之间进行其他比较。这与绝热壁温的测量一起,将为在许多位置分析薄膜冷却方案的有效性提供基础。

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