• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (22): 167-174.

• 论文 • 上一篇    下一篇

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后置灯泡贯流泵三维紊流计算

金燕;刘超;汤方平   

  1. 扬州大学水利科学与工程学院
  • 发布日期:2010-11-20

3D Numerical Simulation of Turbulent Flow in Postpositional Bulb Tubular Pump

JIN Yan;LIU Chao;TANG Fangping   

  1. College of Hydraulic Science and Engineering, Yangzhou University College of Energy and Power Engineering, Yangzhou University
  • Published:2010-11-20

摘要: 通过计算流体力学(Computational fluid dynamics, CFD)方法研究某一后置灯泡贯流泵内部的三维流场,采用RNG k-ε紊流模型和SIMPLE算法对泵叶轮、导叶和进出水流道内的流场进行数值模拟。分析最优工况下装置纵断面的流速和压力分布以及叶轮出口、导叶出口和灯泡体尾部的流速分布情况。着重研究小流量工况、最优工况和大流量工况等不同工况下叶片压力面、吸力面的静压分布以及各断面翼型附近的相对流速分布。同时还计算贯流泵装置各种构件的水力损失,发现导叶体和灯泡体段在水力损失中所占的比重较大。将数模计算结果与模型试验的泵装置性能数据进行对比,结果表明数模计算结果跟试验数据在高效区附近吻合较好,在小流量和大流量工况下存在偏差。采用CFD方法对灯泡贯流泵装置内部流场进行数值模拟可以为泵装置进一步设计优化提供依据。

关键词: 后置灯泡贯流泵, 三维紊流, 数值模拟, 水力性能

Abstract: The computational fluid dynamics (CFD) method is used to investigate the three-dimensional(3D) flow fields in a postpositional bulb tubular pump. In the numerical modeling, RNG k-ε turbulence model and SIMPLE algorism are employed. The velocity distribution and pressure of vertical plane at BEP are analyzed, as well as the velocity of impeller outlet, guide-vane outlet and the tail of the bulb. The focus is on the static pressure distribution of blade pressure surface and suction surface as well as the relative velocity distribution near the airfoil cross-sections under different conditions (the designed condition, large and small flow rates conditions). The hydraulic losses of various components of tubular pump are also calculated, and it is found that the guide vane and bulb unit occupy major share in hydraulic losses. The comparison between the mathematical model calculation result and the model-tested pump performance data shows that the calculation result agrees well with the test data in nearby the high efficiency area; however, deviation exists between them under large flow and small flow working conditions. Using CFD method to simulate the internal flow field of tubular pump can provide the basis for further design optimization of the tubular pump.

Key words: 3D turbulent flow, Hydraulic performance, Numerical simulation, Postpositional bulb tubular pump

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