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Increasing the operating range of Francis turbines by considering dynamic phenomena at part load

机译:通过考虑零件负载的动态现象来增加班车涡轮机的操作范围

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Market trends in the hydro industry call for turbines to be much more flexible in terms of their operating range; as a result, an increasing amount of energy is generated at part load and overload operation. In these'off-design'conditions, a wide range of hydraulic phenomena occurs. This paper presents a numerical study of Francis turbines operating at part load, aimed at predicting and optimizing the mechanical response of the turbine, induced by hydraulic pressure fluctuations. First, unsteady CFD calculations were done for a wide range of part-load operating points. The results served as an input for a finite element analysis to model the structural response on the turbine. The methodology was then applied to improve the hydraulic and mechanical design of the turbine for robustness with a broader operating range.
机译:水电行业的市场趋势在其运营范围内更加灵活地呼吁涡轮机更加灵活;结果,在部件负载和过载操作中产生增加的能量。在这些'Off-Design'Conditions中,发生了广泛的液压现象。本文介绍了在部件负载操作的母频涡轮机的数值研究,旨在预测和优化由液压波动引起的涡轮机的机械响应。首先,为各种部分负载操作点进行不稳定的CFD计算。结果用作有限元分析的输入,以模拟涡轮机上的结构响应。然后应用该方法以改善涡轮机的液压和机械设计,以具有更宽的操作范围的鲁棒性。

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    GE Renewable Energy 82 Avenue Leon Blum 38041 Grenoble Cedex 9 France;

    GE Renewable Energy 82 Avenue Leon Blum 38041 Grenoble Cedex 9 France;

    GE Renewable Energy 82 Avenue Leon Blum 38041 Grenoble Cedex 9 France;

    GE Renewable Energy 82 Avenue Leon Blum 38041 Grenoble Cedex 9 France;

    GE Renewable Energy 82 Avenue Leon Blum 38041 Grenoble Cedex 9 France;

    GE Renewable Energy 82 Avenue Leon Blum 38041 Grenoble Cedex 9 France;

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