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首页> 外文期刊>Journal of turbomachinery >Experimental and Numerical Investigation of Flow Field and Downstream Surface Temperatures of Cylindrical and Diffuser Shaped Film Cooling Holes
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Experimental and Numerical Investigation of Flow Field and Downstream Surface Temperatures of Cylindrical and Diffuser Shaped Film Cooling Holes

机译:圆柱型和扩散型薄膜冷却孔流场和下游表面温度的实验和数值研究

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摘要

An experimental and numerical study of the flow field and the downstream film cooling performance of cylindrical and diffuser shaped cooling holes is presented. The measurements were conducted on a flat plate with a single cooling hole with coolant ejected from a plenum. The flow field was investigated by means of 3D-PIV as well as 3D-LDV measurements, the downstream film cooling effectiveness by means of infrared thermography. Cylindrical and diffuser holes without lateral inclination have been examined, varying blowing ratio and density ratio as well as freestream turbulence levels. 3D-CFD simulations have been performed and validated along with the experimental efforts. The results, presented in terms of contour plots of the three normalized velocity components as well as adiabatic film cooling effectiveness, clearly show the flow structure of the film cooling jets and the differences brought about by the variation of hole geometry and flow parameters. The quantitative agreement between experiment and CFD was reasonable, with better agreement for cylindrical holes than for diffuser holes.
机译:给出了圆柱状和扩散形冷却孔流场和下游薄膜冷却性能的实验和数值研究。测量是在带有单个冷却孔的平板上进行的,冷却液从气室排出。通过3D-PIV和3D-LDV测量研究了流场,并通过红外热成像技术研究了下游薄膜的冷却效果。已经检查了没有侧向倾斜的圆柱孔和扩散孔,改变了鼓风比和密度比以及自由流湍流度。 3D-CFD模拟已经进行并经过实验验证。以三个归一化速度分量的等高线图以及绝热的薄膜冷却效果表示的结果清楚地显示了薄膜冷却射流的流动结构以及孔几何形状和流动参数变化带来的差异。实验和CFD之间的定量一致性是合理的,圆柱孔的一致性要好于扩散孔。

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  • 来源
    《Journal of turbomachinery》 |2013年第1期|011026.1-011026.10|共10页
  • 作者单位

    Siemens AG, Energy Sector Fossil Power Generation Division 45473 Mulheim a. d. Ruhr, Germany;

    Siemens AG, Energy Sector Fossil Power Generation Division 45473 Mulheim a. d. Ruhr, Germany;

    Siemens AG, Energy Sector Fossil Power Generation Division 45473 Mulheim a. d. Ruhr, Germany;

    Institut fur Thermische Stromungsmaschinen,Karlsruhe Institute of Technology,76131 Karlsruhe, Germany;

    Institut fur Thermische Stromungsmaschinen,Karlsruhe Institute of Technology,76131 Karlsruhe, Germany;

    Institut fur Thermische Stromungsmaschinen,Karlsruhe Institute of Technology,76131 Karlsruhe, Germany;

    Institut fur Thermische Stromungsmaschinen,Karlsruhe Institute of Technology,76131 Karlsruhe, Germany;

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