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THE INFLUENCE OF SHROUD AND CAVITY GEOMETRY ON TURBINE PERFORMANCE - AN EXPERIMENTAL AND COMPUTATIONAL STUDY, PART 1: SHROUD GEOMETRY

机译:护罩和腔几何体对涡轮机性能的影响 - 一种实验和计算研究,第1部分:母罩几何形状

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Imperfections in the turbine annulus geometry, caused by the presence of the shroud and associated cavity have a significant influence on the aerodynamics of the main passage flow path. In this paper the datum shroud geometry, representative of steam turbine industrial practice, was systematically varied and numerically tested. The study was carried out using a three-dimensional multi-block solver, which modelled the flow in a 1.5 stage turbine. The following geometry parameters were varied: Inlet and exit cavity length, Shroud overhang upstream of the rotor leading edge and downstream of the trailing edge, Shroud thickness for fixed casing geometry and shroud cavity depth, and Shroud cavity depth for the fixed shroud thickness. The aim of this study was to investigate the influence of the above geometric modifications on mainstream aerodynamics, and to obtain a map of the possible turbine efficiency changes caused by different shroud geometries. The paper then focuses on the influence of different leakage flow fractions on the mainstream aerodynamics. This work highlighted the main mechanisms through which leakage flow affects the mainstream flow and how the two interact for different geometrical variations and leakage flow mass fractions.
机译:在涡轮环带缺陷的几何形状,由所述护罩的存在和相关联的空腔具有上主通道流动路径的空气动力学一个显著影响。本文基准护罩的几何形状,代表汽轮机工业实践的,进行了系统的变化,并且数值测试。该研究进行了使用三维多块解算器,它仿照在1.5级涡轮的流动。下一个几何参数是变化的:入口和出口腔室的长度,转子前缘的防护罩突出上游和后缘的下游,护罩厚度为固定壳体的几何形状和护罩空腔深度,以及用于固定护罩厚度导流罩空腔深度。本研究的目的是调查对主流空气动力学上述几何变形的影响,并获得地图上的可能的涡轮效率的变化由不同几何形状的护罩引起的。纸张然后集中在不同的漏流的级分上的主流空气动力学的影响。这项工作强调通过泄漏流影响主流流动的主要机制,以及如何针对不同的几何变化和泄漏流质量分数两个相互作用。

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