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Experimental Investigation of the Aerothermal Performance of a High Blockage Rib-Roughened Cooling Channel

机译:高阻塞肋粗化冷却通道空气热性能的实验研究

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摘要

The present study deals with a detailed experimental investigation of the turbulent flow inside a rib-roughened turbine blade cooling channel. The measurements are carried out in a stationary straight channel with high blockage ribs installed on one wall. The main objective is to enhance the understanding and deepen the analysis of this complex flow field with the help of highly resolved particle image velocimetry measurements. A quasi-three-dimensional view of the flow field is achieved, allowing the identification of the main time-averaged coherent structures. The combined analysis of the present aerodynamic results with available heat transfer data emphasizes the role of the mean and fluctuating flow features in the heat transfer process. In particular, the stream wiseormal to the wall component of the Reynolds stress tensor is shown to be strictly related to the heat transfer rate on the channel surfaces. A correlation to estimate the heat transfer field from the aerodynamic data is presented for the high blockage rib roughened channel flow.
机译:本研究涉及对肋肋式涡轮叶片冷却通道内的湍流进行的详细实验研究。测量是在固定的直通道中进行的,该通道中的一堵高肋安装在一堵墙上。主要目标是借助高度解析的粒子图像测速仪测量来增进对这种复杂流场的理解并加深分析。获得了流场的准三维视图,可以识别主要的时间平均相干结构。当前空气动力学结果与可用传热数据的组合分析强调了均值和波动流动特征在传热过程中的作用。特别地,显示出与雷诺应力张量的壁分量垂直/垂直的流与通道表面上的传热速率严格相关。提出了从空气动力学数据估计传热场的相关性,用于高阻隔肋粗糙通道的流动。

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