首页> 外文会议>American Society of Mechanical Engineers Turbo Expo >MULTISTAGE ASPECTS AND UNSTEADY EFFECTS OF STATOR AND ROTOR CLOCKING IN AN AXIAL TURBINE WITH LOW ASPECT RATIO BLADING
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MULTISTAGE ASPECTS AND UNSTEADY EFFECTS OF STATOR AND ROTOR CLOCKING IN AN AXIAL TURBINE WITH LOW ASPECT RATIO BLADING

机译:具有低纵横比叶片轴向涡轮机中定子和转子时钟的多级方面和不稳定效应

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This paper presents the outcome of a recent study in clocking-related flow features and multistage effects occurring in high-pressure turbine blade geometries. The current investigation deals with an experimentally based systematic analysis of the effects of both stator-stator and rotor-rotor clocking. Due to the low aspect ratio of the turbine geometry, the flow field is strongly three-dimensional and is dominated by secondary flow structures. The investigation aims to identify the flow interactions involved and the associated effects on performance improvement or degradation. Consequently a three-dimensional numerical analysis has been undertaken to provide the numerical background to the test case considered. The experimental studies were performed in a two-stage axial research turbine facility. The turbine provides a realistic multi-stage environment, in which both stator blade rows and the two rotors can be clocked relative to each other. All blade rows have the same blade number count, which tends to amplify clocking effects. Unsteady and steady measurements were obtained in the second stage using fast response aerodynamic probes (FRAP) and miniature pneumatic 5-hole probes. The current comprehensive investigation has shown that multistage and unsteady flow effects of stator and rotor clocking in low aspect ratio turbines are combined in a nonlinear fashion caused by axial and radial redistribution of low energy fluid. The integral result of clocking on stage efficiency is compensated by competing loss generating mechanisms across the span.
机译:本文介绍了在高压涡轮叶片几何形状中发生的钟表相关流动特征和多级效应的最新研究的结果。目前的调查涉及实验基础的系统分析定子 - 定子和转子时钟的效果。由于涡轮几何形状的低纵横比,流场强烈三维,并且由二次流动结构主导。调查旨在识别所涉及的流动相互作用以及对性能改善或降解的相关影响。因此,已经进行了三维数值分析,为考虑的测试用例提供了数值背景。实验研究在两级轴向研究涡轮机设施中进行。涡轮机提供了一个现实的多级环境,其中定子叶片行和两个转子可以相对于彼此涡出。所有刀片行都具有相同的刀片数计数,往往会放大时钟效果。使用快速响应空气动力学探针(FRAP)和微型气动5孔探针在第二阶段获得不稳定和稳定的测量。目前的综合性研究表明,在低纵横比涡轮机中的定子和转子时钟的多级和不稳定的流动效果以由低能量流体的轴向和径向再分布引起的非线性方式组合。通过跨越跨度竞争产生机制来补偿阶段效率的时钟效率的整体结果。

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