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Influence of blade lean together with blade clocking on the overall aerodynamic performance of a multi-stage turbine

机译:叶片倾斜和叶片计时对多级涡轮机整体空气动力性能的影响

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In the present work, an in-house flow solver for multi-stage turbomachines is first applied to compute the unsteady flows in a subsonic 1.5-stage axial turbine with different clocking configurations. The influence of the wake location of the first stator on the overall adiabatic efficiency is presented and analyzed, demonstrating the possibility to improve the aerodynamic performance of the turbine by properly leaning the stator blade. Four different blade lean schemes are then configured based on the given clocking configuration with peak efficiency at 50% span. The overall adiabatic efficiency and the spanwise distributions of aerodynamic performance parameters of different lean configurations are presented and compared to those of the baseline configuration. The adiabatic efficiency of the optimal lean configuration is about 0.35% larger than that of the baseline configuration, while the maximum adiabatic efficiency difference among different clocking configurations is only 0.086%. The improvement on the overall aerodynamic performance of the multi-stage turbine contributed by blade lean is significantly remarkable. The blade lean and blade clocking can be carefully assembled in the unsteady flow regime during the design or optimization phases of multi-stage turbomachines. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:在目前的工作中,首先应用一种用于多级涡轮机的内部流量求解器来计算具有不同时钟配置的亚音速1.5级轴流式涡轮机中的非稳态流量。呈现并分析了第一定子的尾流位置对整体绝热效率的影响,证明了通过适当地倾斜定子叶片来改善涡轮的空气动力学性能的可能性。然后根据给定的时钟配置配置四种不同的刀片倾斜方案,其峰值效率为50%跨度。介绍了不同的稀薄配置的整体绝热效率和空气动力学性能参数的展向分布,并将其与基线配置进行了比较。最佳稀薄配置的绝热效率比基线配置的绝热效率高约0.35%,而不同时钟配置之间的最大绝热效率差仅为0.086%。叶片倾斜对多级涡轮机整体空气动力学性能的改善非常显着。在多级涡轮机的设计或优化阶段,可以在不稳定的流态中仔细地组装叶片倾斜和叶片计时。 (C)2018 Elsevier Masson SAS。版权所有。

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