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MAINSTREAM AERODYNAMIC EFFECTS DUE TO WHEELSPACE COOLANT INJECTION IN A HIGH-PRESSURE TURBINE STAGE PART I: Aerodynamic Measurements in the Stationary Frame

机译:主流空气动力学效应由于高压涡轮机阶段的滚石冷却剂注入部分I:固定框架中的空气动力学测量

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The relative aerodynamic and performance effects associated with rotor -NGV gap coolant injections were investigated in the Axial Flow Turbine Research Facility (AFTRF) of The Pennsylvania State University. This study quantifies the effects of the coolant injection on the aerodynamic performance of the turbine for radial cooling, impingement cooling in the wheelspace cavity and root injection. Overall, it was found that even a small quantity (1%) of cooling air can have significant effects on the performance character and exit conditions of the high pressure stage. Parameters such as the total-to-total efficiency, total pressure loss coefficient, and three-dimensional velocity field show local changes in excess of 5%, 2%, and 15% respectively. It is clear that the cooling air disturbs the inlet end-wall boundary layer to the rotor and modifies secondary flow development thereby resulting in large changes in turbine exit conditions.
机译:在宾夕法尼亚州立大学的轴流涡轮机研究设施(AFTRF)中研究了与转子-NGV间隙冷却剂注射相关的相对空气动力学和性能效果。该研究量化了冷却剂喷射对涡轮机气动性能的影响,用于径向冷却,在轮孔腔中冲击冷却和根注射。总的来说,发现即使是少量的冷却空气也可能对高压阶段的性能特征和出口条件产生显着影响。总对总效率,总压力损失系数和三维速度场的参数显示局部变化分别超过5%,2%和15%。显然,冷却空气使入口端壁边界层扰乱到转子并改变二次流动显影,从而导致涡轮机出口条件的大变化。

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