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首页> 外文期刊>Experiments in Fluids >Experimental study of the effects of spanwise rotation on the flow in a low aspect ratio diffuser for turbomachinery applications
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Experimental study of the effects of spanwise rotation on the flow in a low aspect ratio diffuser for turbomachinery applications

机译:翼展方向旋转对低纵横比扩压器在涡轮机械中流动的影响的实验研究

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Two dimensional time accurate PIV measurements of the flow between pressure and suction side at different spanwise positions of a rotating channel are presented. The Reynolds and Rotation numbers are representative for the flow in radial impellers of micro gas turbines. Superposition of the 2D results at the different spanwise positions provides a quasi-3D view of the flow and illustrates the impact of Coriolis forces on the 3D flow structure. It is shown that the inlet flow is little affected by rotation. An increasing/decreasing boundary layer thickness is reported on the suction/pressure side wall halfway between the channel inlet and outlet. The turbulence intensity moves away from the suction side wall and remains close to the pressure side wall. The instantaneous measurements at mid-height of the rotating channel reveal the presence of hairpin vortices in the pressure side boundary layer and symmetric vortices near the suction side. Hairpin vortices occur in rotation in the pressure and in the suction side, for the measurement plane close to the channel bottom wall.
机译:提出了在旋转通道的不同翼展方向位置上压力侧和吸力侧之间的流动的二维时间精确PIV测量。雷诺数和转数代表了微型燃气轮机径向叶轮中的流量。 2D结果在不同的翼展方向位置上的叠加提供了流的近似3D视图,并说明了科里奥利力对3D流结构的影响。结果表明,进口流量几乎不受旋转的影响。据报道,在通道入口和出口之间的吸入/压力侧壁中途,边界层厚度增加/减小。湍流强度从吸力侧壁移开并保持靠近压力侧壁。旋转通道中部高度的瞬时测量结果表明,在压力侧边界层中存在发夹涡旋,而在吸力侧附近则存在对称涡旋。对于靠近通道底壁的测量平面,发夹旋涡在压力和吸力侧旋转产生。

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