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首页> 外文期刊>International Journal of Rotating Machinery >Flow structures inside a rotor - stator cavity
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Flow structures inside a rotor - stator cavity

机译:转子内部的流动结构-定子腔

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This paper describes an experimental investigation initiated to determine the three-dimensional flow field inside the rim seal cavity of a double-shrouded rotor - stator system. Thereby, the effects caused by perturbances in the rotor wall were additionally examined. The objective of this work is to provide detailed information about the mechanisms that can promote elevated temperature levels in the high pressure section of a gas turbine. Both ingested hot gas and windage heating generated at the rotor - stator interface can severely affect the material temperatures and thus considerably increase the thermal load of the rotating parts. The flow velocities were measured by means of an advanced LDV system capable of providing phase-resolved data. The flow field was determined for two different rotorstator combinations. One of the rotor disks contained small rectangular cavities, located at the disk rim and arranged uniformly in the circumferential direction. These elements are referred to as the shank cavities of the rotor disk. The mechanical torque was measured to demonstrate the influence of these elements on the windage power. The measurements were performed at operating conditions that are typical for aero-engines. It is shown that a perturbed rotor surface can raise the drag notably. The experiments were conducted in a high speed test rig at rotational Reynolds numbers up to Re{sub}φ≈4.2 · 10{sup}6. The data were plotted as the dimensionless moment coefficient CM and correlated with Re{sub}φ and the dimensionless cooling flow rate C{sub}w.
机译:本文介绍了一项实验研究,该研究旨在确定双罩转子-定子系统的边缘密封腔内的三维流场。由此,另外检查了由转子壁中的扰动引起的影响。这项工作的目的是提供有关可导致燃气轮机高压部分温度升高的机理的详细信息。摄入的热气和在转子-定子界面处产生的风加热都会严重影响材料温度,从而显着增加旋转部件的热负荷。借助于能够提供相分辨数据的先进的LDV系统测量流速。确定了两种不同转子定子组合的流场。转子盘之一具有小的矩形腔,该矩形腔位于盘边缘并且在圆周方向上均匀地布置。这些元件被称为转子盘的柄腔。测量机械扭矩以证明这些元素对风阻功率的影响。测量是在航空发动机典型的工作条件下进行的。结果表明,受扰动的转子表面会明显增加阻力。实验是在一个高速试验台上进行的,其旋转雷诺数最大为Re {sub}φ≈4.2·10 {sup} 6。将该数据绘制为无因次矩系数CM,并与Re {sub}φ和无因次冷却流量C {sub} w相关。

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