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The Impact of Blade-to-Blade Flow Variability on Turbine Blade Cooling Performance

机译:叶片对叶片流动变异性对涡轮叶片冷却性能的影响

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The focus of this paper is the impact of manufacturing variability on turbine blade cooling flow and, subsequently, its impact on oxidation life. A simplified flow network model of the cooling air supply system and a row of blades is proposed. Using this simplified model, the controlling parameters which affect the distribution of cooling flow in a blade row are identified. Small changes in the blade flow tolerances (prior to assembly of the blades into a row) are shown to have a significant impact on the minimum flow observed in a row of blades resulting in substantial increases in the life of a blade row. A selective assembly method is described in which blades are classified into a low-flow and a high-flow group based on passage flow capability (effective areas) in life-limiting regions and assembled into rows from within the groups. Since assembling rows from only high-flow blades is equivalent to raising the low-flow tolerance limit, high-flow blade rows will have the same improvements in minimum flow and life that would result from more stringent tolerances. Furthermore, low-flow blade rows are shown to have minimum blade flows which are the same or somewhat better than a low-flow blade that is isolated in a row of otherwise higher-flowing blades. As a result, low-flow blade rows are shown to have lives that are no worse than random assembly from the full population. Using a higher fidelity model for the auxiliary air system of an existing jet engine, the impact of selective assembly on minimum blade flow and life of a row is estimated and shown to be in qualitative and quantitative agreement with the simplified model analysis.
机译:本文的重点是制造差异对涡轮叶片冷却流的影响,以及随后对氧化寿命的影响。提出了冷却空气供应系统和一排叶片的简化流网络模型。使用此简化模型,可以确定影响叶片排中冷却流分布的控制参数。叶片流动公差的微小变化(在叶片组装成一排之前)显示出对一排叶片中观察到的最小流量有重大影响,从而导致叶片排寿命的显着增加。描述了一种选择性组装方法,其中,根据寿命限制区域中的通道流动能力(有效面积),将叶片分为低流量和高流量组,然后从组内将其组装成行。由于仅从高流量叶片组装排就等于提高了低流量公差极限,因此,高流量叶片排在最小流量和使用寿命方面的改进也将由严格的公差引起。此外,示出的低流量叶片行具有最小的叶片流量,该最小流量与隔离在一排否则流量较高的叶片中的低流量叶片相同或稍好。结果表明,低流量叶片排的寿命不比从总体上随机组装的寿命差。使用现有喷气发动机辅助空气系统的更高保真度模型,可以估算选择性组装对最小叶片流量和一行寿命的影响,并与简化模型分析定性和定量地吻合。

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