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Mathematical modelling of swirling flow in hydraulic turbines for the full operating range

机译:在整个工作范围内水轮机中回旋流的数学模型

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摘要

We introduce and validate a novel mathematical model for computing the radial profiles of both axial and circumferential velocity components, respectively, of the swirling flow exit ing the runner of hydraulic turbines within the full operating range. We assume an incom pressible, inviscid, axisymmetrical, and steady swirling flow, with vanishing radial velocity at runner outlet. First we find the correlation between the flux of moment of momentum downstream the turbine runner and the operating regime given by turbine's discharge and head. Second, we express the relationship between the axial and circumferential velocity components, corresponding to the fixed pitch runner blades, using the swirl-free velocity instead of the traditional relative flow angle at runner outlet. It is shown that the swirl-free velocity profile practically does not change with the operating regime. Third, we introduce a constrained variational problem corresponding to the minimization of the flow force while maintaining the prescribed discharge and flux of moment of momentum. This for mulation also accounts for a possible central stagnant region to develop when operating the turbine far from the best efficiency point. Fourth, we show that by representing the unknown axial velocity profile with a suitable Fourier-Bessel series, the discharge con straint can be automatically satisfied. The resulting numerical algorithm is robust and pro duces results in good agreement with available data for both axial and circumferential velocity profiles measured on a model Francis turbine at several operating regimes. Our mathematical model is suitable for the early optimization stages of the runner design, as it provides the swirling flow configuration at runner outlet without actually computing the runner. By optimizing the parameterized swirl-free velocity profile one can achieve through the inverse design approaches the most suitable runner blades configuration at the trailing edge.
机译:我们介绍并验证了一种新颖的数学模型,用于分别计算在整个工作范围内从水轮机转轮流出的旋流的轴向和圆周速度分量的径向分布。我们假设不可压缩,不粘稠,轴对称且稳定的旋流,且流道出口处的径向速度消失。首先,我们发现涡轮机转轮下游的动量通量与涡轮机排气口和扬程给出的运行状态之间的相关性。其次,我们使用无涡流速度代替转轮出口处的传统相对流角来表示与固定螺距转轮叶片相对应的轴向和圆周速度分量之间的关系。结果表明,无涡流速度曲线实际上不会随运行状态而变化。第三,我们引入了一个约束变分问题,该问题对应于在保持规定的排放量和动量通量的同时最小化流动力的问题。进行模拟时,还可能导致在远离最佳效率点运行涡轮机时可能形成的中央停滞区域。第四,我们表明通过用合适的傅里叶-贝塞尔级数表示未知的轴向速度分布,可以自动满足排放约束。所得的数值算法是鲁棒的,并且产生的结果与可在模型弗朗西斯涡轮机上几种工作状态下测得的轴向和圆周速度曲线的可用数据高度吻合。我们的数学模型适用于流道设计的早期优化阶段,因为它提供了流道出口的旋流配置,而无需实际计算流道。通过优化参数化的无涡流速度曲线,可以通过逆向设计方法在后缘实现最合适的流道叶片配置。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2011年第10期|p.4759-4773|共15页
  • 作者单位

    "Politehnica" University of Timisoara, Hydraulic Machinery Dpt., Bvd. Mihai Viteazu 1, RO-300222 Timis.oara, Romania;

    Romanian Academy - Timisoara Branch, Bvd. Mihai Viteazu 24, RO-300223, Timisoara, Romania;

    Ecole Polytechnique Federate de Lausanne, Laboratory for Hydraulic Machines, Av. De Com 33Bis, CH-1007. Lausanne, Switzerland;

    "Politehnica" University of Timisoara, Hydraulic Machinery Dpt., Bvd. Mihai Viteazu 1, RO-300222 Timis.oara, Romania;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    swirling flow; hydraulic turbine; constrained variational problem; fourier-bessei series;

    机译:旋流水轮机约束变分问题;傅里叶-贝赛系列;

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