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Decelerated Swirling Flow Control in the Discharge Cone of Francis Turbines

机译:弗朗西斯汽轮机排放锥中的减速旋转流量控制

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The decelerated swirling flow in the draft tube cone of Francis turbines is a complex hydrodynamic phenomenon, particularly when the turbine is operated at partial discharge. In this case, the self-induced instability of an incoming steady axisymmetric swirling flow evolves into a three-dimensional unsteady flow field, with processing helical vortex (also called vortex rope) and associated severe pressure fluctuations. The paper presents the development of a swirling flow apparatus designed to generate the same flow conditions as in a Francis turbine at partial discharge, with corresponding helical vortex breakdown in a conical diffuser. This experimental setup allows the investigation of a novel flow control method aimed at mitigating the processing vortex rope by injecting a water jet along the cone axis. Earlier investigations considered a high speed jet, with relatively small discharge, for stabilizing the flow. However, further parametric studies revealed that a jet with a discharge of up to 10% the turbine discharge and velocity close to the average value at the turbine throat is more effective for mitigating the quasi-stagnant central region associated with the vortex rope. It is shown in this paper that such a control jet can be produced by using a flow feedback method, where a fraction of the discharge is collected from downstream the cone wall and injected upstream along the axis without any additional energy input.
机译:在混流式水轮机的引流管锥减速回旋流是一个复杂的现象流体力学,特别是当涡轮机在部分放电操作。在这种情况下,进入稳定轴对称涡流的自引发的不稳定流动演变成一个三维非定常流场,以处理螺旋涡流(也被称为涡绳)和相关联的严重的压力波动。本文提出了一种旋流装置的发展设计为产生相同的流动条件如在局部放电混流式水轮机,在一锥形扩散对应螺旋涡破裂。这个实验装置允许旨在通过注射沿锥体轴线喷水减轻处理涡带的新颖的流量控制方法的研究。早期研究认为是一个高速射流,具有相对小的放电,用于稳定流动。然而,进一步的参量的研究显示,与在涡轮机喉部高达10%的涡轮排出和速度接近平均值的排出的射流是用于减轻与涡流相关的绳准停滞中央区域更有效。它被示出在本文中,这样的控制射流可通过使用流量反馈方法,其中,所述放电的一小部分从下游锥形壁收集并注入上游沿着所述轴线而无需任何额外的能量输入来产生。

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