会议论文详细信息
27th IAHR Symposium on Hydraulic Machinery and Systems
Draft tube flow phenomena across the bulb turbine hill chart
Duquesne, P.^1 ; Fraser, R.^1 ; Maciel, Y.^1 ; Aeschlimann, V.^1 ; Deschênes, C.^1
Hydraulic Machine LAboratory (LAMH), Department of Mechanical Engineering, Laval University, Pavillon Adrien-Pouliot, 1065 avenue de la medicine, QC
G1V 0A6, Canada^1
关键词: Best efficiency point;    Cavitation bubble;    Efficiency curves;    Efficiency measurement;    Frequency contents;    Hydraulic machines;    Hysteresis effect;    Overload condition;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/22/3/032003/pdf
DOI  :  10.1088/1755-1315/22/3/032003
来源: IOP
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【 摘 要 】

In the framework of the BulbT project launched by the Consortium on Hydraulic Machines and the LAMH (Hydraulic Machine Laboratory of Laval University) in 2011, an intensive campaign to identify flow phenomena in the draft tube of a model bulb turbine has been done. A special focus was put on the draft tube component since it has a particular importance for recuperation in low head turbines. Particular operating points were chosen to analyse flow phenomena in this component. For each of these operating points, power, efficiency and pressure were measured following the IEC 60193 standard. Visualizations, unsteady wall pressure and efficiency measurements were performed in this component. The unsteady wall pressure was monitored at seven locations in the draft tube. The frequency content of each pressure signal was analyzed in order to characterize the flow phenomena across the efficiency hill chart. Visualizations were recorded with a high speed camera using tufts and cavitation bubbles as markers. The predominant detected phenomena were mapped and categorized in relation to the efficiency hill charts obtained for three runner blade openings. At partial load, the vortex rope was detected and characterized. An inflection in the partial load efficiency curves was found to be related to complex vortex rope instabilities. For overload conditions, the efficiency curves present a sharp drop after the best efficiency point, corresponding to an inflection on the power curves. This break off is more severe towards the highest blade openings. It is correlated to a flow separation at the wall of the draft tube. Also, due to the separation occurring in these conditions, a hysteresis effect was observed on the efficiency curves.

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