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Laboratory modeling of flow regimes in a draft tube of Francis hydro-turbine

机译:弗朗西斯水轮机草稿中的流动制造实验室建模

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摘要

The paper reports on some results of the experimental study of flow and pressure pulsations in a laboratory model of the draft tube (DT) of Francis-99 hydro-turbine over a broad range of operating regimes. Velocity distributions at the model inlet varied within 866 modes of the turbine load conditions, including those with maximum coherent pressure pulsations on the model walls. The contact and non-contact methods were used to measure pressure pulsations on the model walls using acoustic sensors and to measure the averaged velocity distribution with a laser Doppler anemometer “LAD-06i”. Analysis of the results have showed that in the model cone there are flow modes with forming of precessing vortex cores, accompanied by a sharp increase in the amplitude of coherent pressure pulsations on the wall and the velocity field rearrangement. It is shown that the vortex core starts forming with an increase in the integral parameter of swirl up to S>0.5. A novelty of the work is the combination of the rapid prototyping (3-d printing) of the inflow swirl generators and computerized measurement techniques that makes it possible to acquire rapidly a large amount of experimental data for a variety of designs and operating conditions. The results can provide insight into the effect of various design and operating parameters on the flow physics, as well as serve for verification of the numerical simulations.
机译:本文报告了弗朗西斯-99水轮机草稿(DT)的实验室模型在广泛的操作系统上的实验室模型的实验研究的一些结果。模型入口处的速度分布在涡轮机负荷条件的866模式内变化,包括模型墙壁上具有最大相干压力脉动的模式。使用声学传感器测量模型壁上的压力脉动,并使用激光多普勒风速计“Lad-06i”测量平均速度分布的触点和非接触式方法。结果分析表明,在模型锥体中,存在具有模型的流动模式,具有模拟涡旋芯,伴随着墙壁上的相干压力脉动的幅度急剧增加和速度场重新排列。结果表明,涡旋芯开始形成,随着SWIRL的整体参数的增加,直到S> 0.5。该工作的新颖性是流入旋流发电机的快速原型(3-D打印)和计算机化测量技术的组合,使得可以为各种设计和操作条件进行快速获取大量实验数据。结果可以在流量物理学上深入了解各种设计和操作参数的影响,以及用于验证数值模拟的效果。

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