首页> 外文会议>ASME summer heat transfer conference;HT2009 >MEASUREMENT OF UNSTEADY FLOW IN PUMP-TURBINE FOR HYDROPOWER USING PIV METHOD
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MEASUREMENT OF UNSTEADY FLOW IN PUMP-TURBINE FOR HYDROPOWER USING PIV METHOD

机译:PIV法测量水轮机水轮机非定常流动

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It is thought that the pressure fluctuation can occur due to the interaction between flow through guide vanes and flow into runner blades, resulting in a vibration of turbine and a blade cracking, in a hydraulic turbine operated in a wide range for flexible power demand. High accurate velocity measurement with high time/spatial resolution can help to clarify the mechanism of the interaction and to provide good experimental data for the validation of numerical procedure. So the aim of present study is to estimate the unstable velocity field quantitatively in the area between guide vanes and runner blades, using high time-resolved particle image velocimetry (PIV). Two types of velocity measurements were carried out, i.e., phase-locked measurement and high time sequential velocity measurement, in a pump-turbine model with 20 guide vanes and 6 runner blades. The characteristic of the flow field varied corresponding to the operating conditions such as flow rate and rotational speed. Opening angles of guide vanes were kept uniform. A clockwise vortex was generated at inside of the runner blade under smaller rotational speed. A counterclockwise vortex was separated at the backside of the runner blade under higher rotational speed. At any operating conditions, the velocity between guide vanes and runner blades oscillated periodically at the blade passing frequency.
机译:人们认为,在为了灵活的动力需求而广泛操作的水力涡轮机中,由于流过引导叶片的流和流到叶轮叶片之间的相互作用而可能发生压力波动,从而导致涡轮机的振动和叶片破裂。具有高时间/空间分辨率的高精度速度测量可以帮助阐明相互作用的机理,并为验证数值程序提供良好的实验数据。因此,本研究的目的是使用高时间分辨粒子图像测速仪(PIV)定量估算导叶和叶轮之间区域的不稳定速度场。在具有20个导流叶片和6个转轮叶片的水泵水轮机模型中,进行了两种类型的速度测量,即锁相测量和高时间顺序速度测量。流场的特性根据诸如流量和转速的运行条件而变化。导叶的张开角度保持一致。在叶轮叶片内部以较小的旋转速度产生了顺时针旋涡。在较高的转速下,在叶轮叶片的背面分离了逆时针的涡流。在任何运行条件下,导向叶片和流道叶片之间的速度都以叶片通过频率周期性地振荡。

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