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UNSTEADY FLOW FIELD OF AN AXIAL-FLOW TURBINE ROTOR AT A LOW REYNOLDS NUMBER

机译:轴流涡轮转子的不稳定流场,低雷诺数

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The unsteady flow field of an annular turbine rotor was investigated experimentally using a laser Doppler velocimetry (LDV) system. Detailed measurements of the time-averaged and time-resolved distributions of the velocity, flow angle, and turbulence intensity, etc. were carried out at a very low Reynolds number condition, R{sub}(eout) = 3.5 × 10{sup}4. The data obtained were analyzed from the viewpoints of both an absolute (stationary) frame of reference and a relative (rotating) frame of reference. The effect of the turbine nozzle wake and secondary vortices on the flow field inside the rotor passage was clearly captured. It was found that the nozzle wake and secondary vortices are suddenly distorted at the rotor inlet, because of the rotating potential field of the rotor. The nozzle flow (wake and passage vortices) and the rotor flow (boundary layer, wake, tip leakage vortex, and passage vortices) interact intensively inside the rotor passage.
机译:使用激光多普勒测速器(LDV)系统实验研究了环形涡轮转子的不稳定流场。详细测量速度,流量和湍流强度等的时间平均和时间分辨分布等,在非常低的雷诺数条件下进行,R {sub}(eout)= 3.5×10 {sup}进行。 4.从绝对(静止的)参考框架的观点和相对(旋转)参考框架的观点来分析所获得的数据。清楚地捕获了涡轮喷嘴唤醒和次级涡流对转子通道内的流场的影响。发现喷嘴唤醒和次级涡流突然在转子入口处突然扭曲,因为转子的旋转电位场。喷嘴流(唤醒和通道涡流)和转子流(边界层,唤醒,尖端泄漏涡流和通道涡流)在转子通道内密集地相互作用。

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