• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (3): 252-257.

• 论文 • 上一篇    下一篇

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基于RNG紊流模型的立式轴流泵站三维流动数值模拟及性能预测

成立;刘超;汤方平;周济人   

  1. 扬州大学水利科学与工程学院
  • 发布日期:2009-03-15

3D Numerical Simulation and Performance Predication of Vertical Axial Flow Pumping Station by RNG Turbulent Model

CHENG Li;LIU Chao;TANG Fangping;ZHOU Jiren   

  1. College of Hydaulic Science & Engineering, Yangzhou University
  • Published:2009-03-15

摘要: 立式轴流泵站具有流量大、扬程低等特点,在农田排灌、调水工程等得到了广泛应用,目前在建的南水北调东线工程的泵站大多采用该形式。为深入研究立式轴流泵站内部流动和水力性能,采用考虑粗糙度的壁面函数的RNG紊流模型和SIMPLEC算法,基于多旋转坐标系模型,计算了采用钟型进水流道和蜗壳出水流道的低扬程立式泵站定常流动。通过计算获得了泵站整体流场结果,分析了在有转轮条件下进水流道喇叭管内断面轴向流速分布规律对泵站叶轮安装高程的影响,给出了参考的叶轮名义高度取值。通过计算预测了泵站水力性能,并与模型试验结果进行了比较,研究表明设计工况下数值预测与试验数据值吻合较好。三维数值分析和试验结果表明该泵站形式在南水北调东线工程中有一定的应用前景。

关键词: 南水北调工程, 湍流模型, 性能预测, 轴流泵站

Abstract: Vertical axial flow pumping stations have advantages of large capacity and low head. This type of pumping station has been widely used for water transportation or irrigation and drainage. Most of the pumping stations presently under construction for the East Routine of South-to-North Water Transfer Project adopt this type. The flow pattern and hydraulic performance of vertical pumping station with bell inlet and worm outlet are studied. The incompressible N-S equations are solved by using the finite volume method. Based on the RNG k-ε model with wall-function law, SIMPLEC algorithm is applied for the solution of the discretization governing equation. By using multiple reference frames, the flow detail of whole vertical pumping system is attained. The relation between the axial flow distributing law of inlet bellmouth with rotating impeller and installation height of pumping station is analyzed. The reference nominal height of pump is put forward. The numerical hydraulic performance is predicted. A good agreement is achieved between the predicted data and experimental data under designed operating condition. 3D numerical computation and model test show that this type of pumping station can be applied in the East Route of South-to-North Water Transfer Project.

Key words: Axial flow pumping station, Performance predication, South-to-North Water Transfer Project, Turbulent model

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