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Modelling and optimization of the velocity profiles at the draft tube inlet of a Francis turbine within an operating range

机译:在工作范围内,对弗朗西斯涡轮的引流管入口处的速度分布进行建模和优化

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Operating hydraulic turbines over an extended range of discharge values requires an optimized runner that minimizes the weighted-average draft tube losses. It is shown that the draft tube losses can be minimized before actually designing the (new or refurbished) runner blades by optimizing the runner outlet flow. For this, a new runner surrogate model is introduced, where the relative flow angle is expressed via the so-called swirl-free velocity profile (represented with two parameters). Given a swirl-free velocity profile, as well as a turbine discharge value, the model provides swirling flow profiles consistent with the hydraulic turbine operation. With this swirling flow as inlet condition, the draft tube flow computation provides the relationship between the swirl-free velocity parameters and the hydraulic loss. It is shown that this approach can be used for optimizing the runner for a range of turbine operating regimes.
机译:在较大的排放值范围内运行水轮机需要优化的流道,以使加权平均引流管损失降至最低。结果表明,通过优化流道出口流量,在实际设计(新的或翻新的)流道叶片之前,可以将引流管的损失降到最低。为此,引入了新的流道替代模型,其中相对流动角通过所谓的无涡流速度曲线(用两个参数表示)表示。给定无涡流速度曲线以及涡轮机排放值,该模型将提供与水轮机运行一致的涡流曲线。以该旋流为进口条件,引流管流量计算提供了无旋流速度参数与水力损失之间的关系。结果表明,该方法可用于针对一系列涡轮机运行方式优化转轮。

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