首页> 外文会议>ASME heat transfer conference >A PARAMETRIC NUMERICAL STUDY OF THE EFFECTS OF FREESTREAM TURBULENCE INTENSITY AND LENGTH SCALE ON ANTI-VORTEX FILM COOLING DESIGN AT HIGH BLOWING RATIO
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A PARAMETRIC NUMERICAL STUDY OF THE EFFECTS OF FREESTREAM TURBULENCE INTENSITY AND LENGTH SCALE ON ANTI-VORTEX FILM COOLING DESIGN AT HIGH BLOWING RATIO

机译:自由流湍流强度和长度尺度对高吹气比下涡旋膜冷却设计影响的参数数值研究

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An advanced, high-effectiveness film-cooling design, the anti-vortex hole (AVH) has been investigated by several research groups and shown to mitigate or counter the vorticity generated by conventional holes and increase film effectiveness at high blowing ratios and low freestream turbulence levels. The effects of increased turbulence on the AVH geometry were previously investigated and presented by researchers at West Virginia University (WVU), in collaboration with NASA, in a preliminary CFD study on the film effectiveness and net heat flux reduction (NHFR) at high blowing ratio and elevated freestream turbulence levels for the adjacent AVH. The current paper presents the results of an extended numerical parametric study, which attempts to separate the effects of turbulence intensity and length-scale on film cooling effectiveness of the AVH. In the extended study, higher freestream turbulence intensity and larger scale cases were investigated with turbulence intensities of 5, 10 and 20% and length scales based on cooling hole diameter of A_x/d_m =1,3 and 6. Increasing turbulence intensity was shown to increase the centerline, span-averaged and area-averaged adiabatic film cooling effectiveness. Larger turbulent length scales were shown to have little to no effect on the centerline, span-averaged and area-averaged adiabatic film-cooling effectiveness at lower turbulence levels, but slightly increased effect at the highest turbulence levels investigated.
机译:多个研究小组对先进的,高效的薄膜冷却设计,防涡流孔(AVH)进行了研究,结果表明,在高吹塑比和低自由流湍流的情况下,防涡流孔(AVH)可以减轻或抵消常规孔产生的涡流并提高膜效率。水平。西弗吉尼亚大学(WVU)的研究人员与美国宇航局(NASA)合作,对湍流增加对AVH几何形状的影响进行了先前的研究和介绍,该研究针对高吹塑比下的薄膜效率和净热通量减少(NHFR)进行了初步CFD研究。以及相邻AVH的自由流湍流水平升高。本文介绍了扩展的数值参数研究的结果,该研究试图分离湍流强度和长度尺度对AVH薄膜冷却效果的影响。在扩展研究中,研究了较高的自由流湍流强度和较大规模的情况,湍流强度分别为5%,10%和20%,长度尺度基于冷却孔直径A_x / d_m = 1,3和6。提高中心线,平均跨度和平均面积绝热膜的冷却效率。结果表明,较大的湍流长度尺度在较低的湍流水平下对中心线,跨度平均和面积平均的绝热膜冷却效果几乎没有影响,但在所研究的最高湍流水平下,其影响略有增加。

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