局部流动变化对旋转涡轮叶片整体效率和寿命的影响

Brian F. Knisely, Reid A. Berdanier, J. Wagner, K. Thole, A. Arisi, C. Haldeman
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引用次数: 3

摘要

随着燃气涡轮发动机的燃烧温度不断提高,以实现高效率,主气路中的部件必须受到冷却流的保护,以确保达到寿命目标。然而,制造变化会影响具有相同标称设计的组件的性能和寿命特性。本研究展示了9个真实尺寸的航空发动机涡轮叶片的叶片流动和整体冷却效率测量。以固定的压力比通过每个叶片进行流量测量,以确定孔之间和叶片之间的流量变异性。在稳定热航空研究涡轮实验室,红外热成像技术被用于捕获空间分辨温度测量,报告了在高速旋转条件下相同的9个叶片的总体有效性。热性能与叶片流动性能相关,表明叶片与叶片之间由于制造差异而产生的巨大差异。测量还表明,在冷却射流轨迹和整体冷却效率方面存在很大差异。最后,将观察到的叶片与叶片之间的效率差异按比例进行了计算,并对发动机的寿命进行了估计,结果显示,由于制造过程的差异,一些叶片的寿命预计只有其他叶片的一半。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Part-to-Part Flow Variations on Overall Effectiveness and Life of Rotating Turbine Blades
As firing temperatures in gas turbine engines continue to increase to achieve high efficiencies, components in the main gas path must be protected with cooling flows to ensure lifing targets are met. Manufacturing variations, however, influence the performance and life characteristics of components with the same nominal design. This study presents blade flow and overall cooling effectiveness measurements for nine true-scale, aero engine turbine blades with realistic manufacturing variations. Flow measurements were made through each blade at a fixed pressure ratio to determine flow variability between holes and between blades. Infrared thermography was used to capture spatially-resolved temperature measurements reported as overall effectiveness on the same nine blades under high-speed rotating conditions at the Steady Thermal Aero Research Turbine Laboratory. Thermal performance was correlated with blade flow performance indicating substantial blade-to-blade variations resulting from manufacturing differences. Measurements also indicated wide variations in cooling jet trajectories as well as overall cooling effectiveness. Finally, the observed blade-to-blade variations in effectiveness were scaled to engine conditions with lifing estimates showing some blades would be expected to last only half as long as others due to manufacturing variability.
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