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INFLUENCES OF AXIAL GAP BETWEEN BLADE ROWS ON SECONDARY FLOWS AND AERODYNAMIC PERFORMANCE IN A TURBINE STAGE

机译:叶片间隙轴向间隙对涡轮级二次流和气动性能的影响

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A study on the effects of the axial gap between stator and rotor upon the stage performance and flow field of a single axial flow turbine stage is presented in this paper. Three axial gaps were tested, which were achieved by moving the stator vane in the axial direction while keeping the disk cavity constant. The effect of the axial gap was investigated at two different conditions, that is design and off-design conditions. The unsteady three-dimensional flow field was analyzed by time-accurate RANS (Reynolds-Averaged Navier-Stokes) simulations. The simulation results were compared with the experiments, in which total pressure and the time-averaged flow field upstream and downstream of the rotor were obtained by five-hole probe measurements. The effect of the axial gap was confirmed in the endwall regions, and obtained relatively at off-design condition. The turbine stage efficiency was improved almost linearly by reducing the axial gap at the off-design condition.
机译:本文研究了定子和转子之间的轴向间隙对单轴流涡轮级的级性能和流场的影响。测试了三个轴向间隙,这是通过在保持磁盘腔恒定的同时沿轴向移动定子叶片来实现的。在两个不同的条件下,即设计和非设计条件下,研究了轴向间隙的影响。通过时间精确的RANS(雷诺平均Navier-Stokes)模拟分析了不稳定的三维流场。将仿真结果与实验进行了比较,在实验中,通过五孔探针测量获得了转子上游和下游的总压力和时间平均流场。轴向间隙的影响在端壁区域得到了确认,并且是在非设计条件下获得的。通过减小非设计工况下的轴向间隙,涡轮级效率几乎线性提高。

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