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首页> 外文期刊>International Journal of Rotating Machinery >Experimental Investigation of Innovative Internal Trailing Edge Cooling Configurations with Pentagonal Arrangement and Elliptic Pin Fin
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Experimental Investigation of Innovative Internal Trailing Edge Cooling Configurations with Pentagonal Arrangement and Elliptic Pin Fin

机译:五角形布置和椭圆形销鳍的创新内部后缘冷却结构的实验研究

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This paper describes a heat transfer experimental study of four different internal trailing edge cooling configurations based on pin fin schemes. The aim of the study is the comparison between innovative configurations and standard ones. So, a circular pin fin configuration with an innovative pentagonal scheme is compared to a standard staggered scheme, while two elliptic pin fin configurations are compared to each other turning the ellipse from the streamwise to the spanwise direction. For each configuration, heat transfer and pressure loss measurements were made keeping the Mach number fixed at 0.3 and varying the Reynolds number from 9000 to 27000. In order to investigate the overall behavior of both endwall and pedestals, heat transfer measurements are performed using a combined transient technique. Over the endwall surface, the classic transient technique with thermochromic liquid crystals allows the measurement of a detailed heat transfer coefficient (HTC) map. Pin fins are made of high thermal conductivity material, and an inverse data reduction method based on a finite element code allows to evaluate the mean HTC of each pin fin. Results show that the pentagonal arrangement generates a nonuniform HTC distribution over the endwall surface, while, in terms of average values, it is equivalent to the staggered configuration. On the contrary, the HTC map of the two elliptic configurations is similar, but the spanwise arrangement generates higher heat transfer coefficients and pressure losses.
机译:本文介绍了基于针翅方案的四种不同内部后缘冷却配置的传热实验研究。研究的目的是比较创新配置和标准配置。因此,将具有创新的五边形方案的圆形销钉翅片配置与标准交错方案进行了比较,而将两个椭圆形销钉翅片配置彼此进行了比较,将椭圆从流向转向到展向。对于每种配置,均进行传热和压力损失测量,以将马赫数固定为0.3,并将雷诺数从9000改变为27000。为了研究端壁和基座的整体性能,结合使用传热测量瞬态技术。在端壁表面上,采用热致变色液晶的经典瞬态技术可以测量详细的传热系数(HTC)图。针鳍由高导热率材料制成,并且基于有限元代码的逆数据缩减方法可以评估每个针鳍的平均HTC。结果表明,五边形排列会在端壁表面上生成不均匀的HTC分布,而就平均值而言,它相当于交错配置。相反,两个椭圆形配置的HTC映射图相似,但是跨度排列会产生更高的传热系数和压力损失。

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