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Relation of Clocking Effect and Secondary Flow in a 1.5 Stage Axial Turbine

机译:1.5级轴流涡轮的计时效应与二次流的关系

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A three-dimensional unsteady flow simulation was conducted to investigate the relation of clocking effect and secondary flow in a 1.5 stage axial turbine. Six relative positions of two stator rows were investigated by positioning the second stator being clocked in a step of 1/6 pitch. The relative efficiency benefit of about 1% was obtained depending on clocking positions. However, internal flows had some different features from the previous study at maximum and minimum efficiency positions, since the first stator wake was mixed out with the rotor wake before arriving at the leading edge of the second stator at mid-span. Instead of the first stator wake, it was found that the secondary flow plays an important role to the efficiency variation at each clocking position. The time-averaged local efficiency along the span at maximum efficiency was more uniform than that at minimum efficiency. That is, the span-wise efficiency distribution at minimum efficiency has larger values at mid-span but smaller values near the hub and casing compared with the case at maximum efficiency. This spanwise efficiency distribution could be also explained by secondary flow behavior in an axial turbine.
机译:进行了三维非稳态流动仿真,以研究1.5级轴流式涡轮机的计时效应与二次流之间的关系。通过以1/6节距的步长定位第二个定子,研究了两个定子行的六个相对位置。取决于时钟位置,可获得约1%的相对效率收益。但是,内部流动在最大和最小效率位置具有与先前研究不同的特征,因为在到达中间跨度的第二个定子的前缘之前,第一定子的尾流与转子的尾流混合在一起。代替第一定子流,发现次级流对于每个时钟位置处的效率变化起重要作用。沿跨度的时间平均局部效率在最大效率下比在最小效率下更均匀。即,与最大效率的情况相比,最小效率的翼展方向效率分布在中翼展处具有较大的值,但在毂和壳体附近具有较小的值。这种翼展方向的效率分布也可以通过轴流式涡轮机的二次流动特性来解释。

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