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COMPARISON OF TURBINE TIP LEAKAGE FLOW FOR FLAT TIP AND SQUEALER TIP GEOMETRIES AT HIGH-SPEED CONDITIONS

机译:扁平尖端漏流与斜尖端漏流在高速条件下的比较

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The tip leakage flow characteristics for flat and squealer turbine tip geometries are studied in the von Karman Institute Isentropic Light Piston Compression Tube facility, CT-2, at different Reynolds and Mach number conditions for a fixed value of the tip gap in a non-rotating, linear cascade arrangement. To the best knowledge of the authors, these are among the very few high-speed tip flow data for the flat tip and squealer tip geometries. Oil flow visualizations and static pressure measurements on the blade tip, blade surface, and on the corresponding endwall provide insight to the structure of the two different tip flows. Aerodynamic losses are measured for the different tip arrangements, also. The squealer tip provides a significant decrease in velocity through the tip gap with respect to the flat tip blade. For the flat tip, an increase in Reynolds number causes an increase in tip velocity levels, but the squealer tip is relatively insensitive to changes in Reynolds number.
机译:在Von Karman Institute Inentropic Light活塞压缩管设施,CT-2,在不同的雷诺和马赫数条件下,研究了用于平坦和耳声涡轮机尖端几何形状的尖端泄漏流动特性,用于在非旋转中的尖端间隙的固定值。 ,线性级联布置。为了提出作者的最佳知识,这些是扁平尖端和斜纹尖端几何形状的很少的高速尖端流数据之一。叶片尖端,叶片表面和相应的端壁上的油流性可视化和静压测量为两个不同尖端流的结构提供了洞察力。对于不同的尖端布置,测量空气动力学损失。尖端尖端通过相对于扁平尖端叶片提供通过尖端间隙的速度显着降低。对于扁平尖端,雷诺数的增加导致尖端速度水平的增加,但尖端尖端对雷诺数的变化相对不敏感。

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  • 来源
    《ASME Turbo Expo》|2004年||共9页
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  • 作者

    Nicole L. Key;

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  • 中图分类 TK47-53;
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  • 入库时间 2022-08-20 20:55:07

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