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首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >EFFECTS OF GEOMETRY PARAMETERS ON THE COOLING PERFORMANCE AND CONJUGATE THERMAL-ELASTIC PROPERTY OF DOUBLE-REVERSE-JET FILM COOLING
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EFFECTS OF GEOMETRY PARAMETERS ON THE COOLING PERFORMANCE AND CONJUGATE THERMAL-ELASTIC PROPERTY OF DOUBLE-REVERSE-JET FILM COOLING

机译:几何参数对双反向喷射膜冷却冷却性能和共轭热弹性的影响

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摘要

In order to investigate the double-reverse-jet film cooling (DRJFC), the multi-field coupling calculating method is used to study the effect of geometric parameters on the resultant vortex structure and conjugate thermal-elastic property. The traditional streamwise film cooling is also investigated for comparison. The results indicate that the formation of effective anti-kidney vortices is the key to enhance the dimensionless temperature of DRJFC holes. At low blowing ratios, the streamwise or lateral distance between two DRJFC holes should be increased to widen the transverse shift of the jets, thus, to increase the cooling performance. At high blowing ratios, the lateral distance should be decreased to prevent two jets from separating apart so that the malfunction of the anti-kidney vortices could be avoided. The stress concentration resulting from the nonuniform temperature distribution is considered.
机译:为了研究双反向喷射膜冷却(DRJFC),使用多场耦合计算方法来研究几何参数对所得涡流结构和共轭热弹性性能的影响。还研究了传统的流动膜冷却以进行比较。结果表明,形成有效的抗肾涡旋是增强DRJFC孔的无量纲温度的关键。在低吹率下,应增加两个DRJFC孔之间的流动或横向距离以加宽喷射器的横向偏移,从而增加了冷却性能。在高吹效率下,应减少横向距离以防止两个喷射分离,以便可以避免抗肾涡旋的故障。考虑了由非均匀温度分布产生的应力浓度。

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