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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >The Effect of Vanes and Blades on Ingress in Gas Turbines
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The Effect of Vanes and Blades on Ingress in Gas Turbines

机译:叶片和叶片对燃气轮机进入的影响

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This paper presents experimental and computational results using a 1.5-stage test rig designed to investigate the effects of ingress through a double radial overlap rim-seal. The effect of the vanes and blades on ingress was investigated by a series of carefully controlled experiments: first, the position of the vane relative to the rim seal was varied; second, the effect of the rotor blades was isolated using a disk with and without blades. Measurements of steady pressure in the annulus show a strong influence of the vane position. The relationship between sealing effectiveness and purge flowrate exhibited a pronounced inflection for intermediate levels of purge; the inflection did not occur for experiments with a Modeless rotor. Shifting the vane closer to the rim-seal, and therefore the blade, caused a local increase in ingress in the inflection region; again, this effect was not observed for the bladeless experiments. Unsteady pressure measurements at the periphery of the wheel-space revealed the existence of large-scale pressure structures (or instabilities) which depended weakly on the vane position and sealing flowrate. These were measured with and without the blades on the rotor disk. In all cases, these structures rotated close to the disk speed.
机译:本文介绍了使用1.5阶段试验台的实验和计算结果,该试验台设计用于研究通过双径向重叠边沿密封件进入的影响。通过一系列精心控制的实验研究了叶片和叶片对进气的影响:首先,改变叶片相对于轮辋密封的位置;其次,使用带和不带叶片的圆盘隔离转子叶片的作用。环空中稳定压力的测量显示出叶片位置的强烈影响。密封效果和吹扫流量之间的关系在中间吹扫水平上表现出明显的变化;对于无模式转子的实验,未发生拐点。将叶片移至更靠近轮圈密封件的位置,从而使叶片移至更靠近拐角区域的位置;同样,在无叶片实验中未观察到这种效果。在叶轮空间外围进行的非恒定压力测量表明,存在大范围的压力结构(或不稳定性),该结构在很大程度上取决于叶片位置和密封流量。这些测量是在转子盘上有或没有叶片的情况下进行的。在所有情况下,这些结构都旋转接近磁盘速度。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2020年第2期| 021020.1-021020.12| 共12页
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    Department of Mechanical Engineering University of Bath Bath BA2 7AY UK;

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