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Influence of Prehistory and Leading Edge Contouring on Aero Performance of a Three-Dimensional Nozzle Guide Vane

机译:史前轮廓和前缘轮廓对三维喷嘴导向叶片气动性能的影响

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摘要

Experiments are conducted to investigate the effect of the prehistory in the aerodynamic performance of a three-dimensional nozzle guide vane with a hub leading edge contouring. The performance is determined with two pneumatic probes (five hole and three hole} concentrating mainly on the end wall. The investigated vane is a geometrically similar gas turbine vane for the first stage with a reference exit Mach number of 0.9. Results are compared for the baseline and filleted cases for a wide range of operating exit Mach numbers from 0.5 to 0.9. The presented data includes loading distributions, loss distributions. fields of exit flow angles, velocity vector, and vorticity contour, as well as mass-averaged loss coefficients. The results show an insignificant influence of the leading edge fillet on the performance of the vane. However, the prehistory (inlet condition) affects significantly in the secondary loss. Additionally, an oil visualization technique yields information about the streamlines on the solid vane surface, which allows identifying the locations of secondary flow vortices, stagnation line, and saddle point.
机译:进行实验以研究史前历史对具有轮毂前缘轮廓的三维喷嘴导向叶片的空气动力学性能的影响。性能由两个气动探针(五个孔和三个孔)主要集中在端壁上确定。研究的叶片是第一级几何相似的燃气轮机叶片,参考出口马赫数为0.9。工作出口马赫数范围从0.5到0.9的基线和圆角情况,显示的数据包括载荷分布,损耗分布,出口流角,速度矢量和涡度等值线的字段,以及质量平均损耗系数。结果表明,前缘圆角对叶片性能的影响不显着,但是,史前(进风条件)对二次损失的影响显着。此外,油可视化技术还可以得出有关固体叶片表面流线的信息,这样可以确定次级涡流,停滞线和鞍点的位置。

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  • 来源
    《Journal of turbomachinery》 |2014年第7期|071014.1-071014.10|共10页
  • 作者单位

    Heat and Power Technology, KTH Royal Institute of Technology, Stockholm SE-100 44, Sweden;

    Energy Oil & Gas Design Department, Siemens LLC, B. Tatarskaya Street, 9, Moscow 115184, Russia;

    Heat and Power Technology, KTH Royal Institute of Technology, Stockholm SE-100 44, Sweden;

    Heat and Power Technology, KTH Royal Institute of Technology, Stockholm SE-100 44, Sweden;

    Heat and Power Technology, KTH Royal Institute of Technology, Stockholm SE-100 44, Sweden;

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