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THE EFFECTS OF MANUFACTURING TOLERANCES ON GAS TURBINE COOLING

机译:制造公差对燃气轮机冷却的影响

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This study presents a summary of the effects of manufacturing methods and processing steps upon the resulting thermal boundary conditions for typical highly cooled turbine airfoils. Specific emphasis is placed on the conservatism that must be "designed into" the component for survival due to realistic manufacturing tolerances. Using the features of a typical blade design, the main geometric factors that can influence the blade heat transfer capability through manufacturing variability are enumerated. The tolerances on those geometric factors are provided and the approximate quantitative impact on thermal boundary conditions is summarized. A simple example of airfoil cooling for a representative wall section is used to tabulate the variations with the resulting changes in the most affected thermal boundary conditions. Each of the main geometric factors is then evaluated in terms of its possible effect on maximum metal temperature. Paretos of the effects of manufacturing factors exhibit which factors are key and where tighter tolerances may help. Monte Carlo analysis results show the probability distributions associated with overall cooling changes tied to the tolerances.
机译:这项研究总结了制造方法和加工步骤对典型的高度冷却的涡轮机翼型所产生的热边界条件的影响。由于实际的制造公差,必须特别注意保守性,必须将其“设计”到组件中才能生存。利用典型叶片设计的特征,列举了可通过制造差异性影响叶片传热能力的主要几何因素。提供了这些几何因素的公差,并总结了对热边界条件的近似定量影响。用一个典型的壁面冷却机翼冷却的简单例子来制表变化,并在最受影响的热边界条件下产生变化。然后根据对最大金属温度的可能影响来评估每个主要几何因素。制造因素的影响比比皆是,哪些因素是关键因素,更严格的公差可能会在哪些方面发挥作用。蒙特卡洛分析结果表明,与总体冷却变化相关的概率分布与公差相关。

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