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A superelement-based method for computing unsteady three-dimensional potential flows in hydraulic turbomachines

机译:一种基于超单元的计算液压涡轮机非定常三维势流的方法

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摘要

A numerical method is presented for the computation of unsteady, three-dimensional potential flows in hydraulic pumps and turbines. The superelement method has been extended in order to eliminate slave degrees of freedom not only from the governing Laplace equation, but also from the Kutta conditions. The resulting superelement formulation is invariant under rotation. Therefore the geometrical symmetry of the flow channels in the rotor can be exploited. This makes the method especially suitable to performing fully coupled computations of the unsteady flow phenomena in both rotor and stator, the so-called rotor-stator interaction. udThe developed numerical method is used to simulate the unsteady flow in an industrial mixed-flow pump. Two types of simulation are considered: one in which unsteady wakes behind the trailing edges of the rotor blades are taken into account and one in which these are neglected. Results are given that show the importance of unsteady flow phenomena. However, the computed head-capacity curve is hardly influenced by whether or not unsteady wakes are taken into account.
机译:提出了一种数值方法,用于计算液压泵和涡轮机中不稳定的三维势流。扩展了超元素方法,以便不仅从控制拉普拉斯方程式而且从Kutta条件中消除从动自由度。所得的超元素公式在旋转下不变。因此,可以利用转子中的流动通道的几何对称性。这使得该方法特别适合于执行转子和定子中非定常流动现象的完全耦合计算,即所谓的转子-定子相互作用。 ud所开发的数值方法用于模拟工业混流泵中的非恒定流。考虑了两种类型的模拟:一种考虑了在转子叶片后缘后面的非定常苏醒,另一种忽略了这些。给出的结果表明了非稳态流动现象的重要性。但是,是否考虑了不稳定的尾流,几乎不会影响计算出的水头能力曲线。

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