导叶式离心泵内部流场数值模拟与试验
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国家自然科学基金项目(51479173、51509209)和陕西省水利厅项目(2017slkj-5)


Numerical Simulation and Experiment of Flow Field in Centrifugal Pump with Vane Diffuser
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    摘要:

    导叶式离心泵应用范围越来越广泛,迫切需对其稳定性运行及内部非稳态流动机理等相关问题进行探讨与研究。结合数值软件ANSYS-CFX与试验方法,基于SST k -ω湍流模型对导叶式离心泵内部非定常流场进行数值分析,并采用试验方法对其压力脉动特性进行研究,探讨不同流量工况下,压力脉动特性与非稳态流场分布规律。结果表明:导叶进口处压力脉动高于导叶出口处,而蜗壳隔舌处脉动强度小于其出口处;叶轮内压力分布主要受叶轮-导叶动静干涉作用影响;导叶内压力分布同时受动静干涉作用和蜗壳不对称几何形状影响;因叶轮出口尾迹流-射流影响,叶片出口附近出现吸力面静压大于压力面;由于导叶前缘与叶轮尾缘的影响,导叶叶片进口处压力分布极其复杂,规律性较差。

    Abstract:

    With the wide use of vane centrifugal pump, it is urgent to discuss and study its stable operation and internal unsteady flow mechanism and other related issues in depth. The vaned diffuser is an important flow passage component in rotating machines and is widely used in turbines, compressors and pumps. The vaned diffuser applied to the multistage centrifugal pump can convert kinetic energy of liquid to pressure energy, and reduce radial force imposed on impeller in a single centrifugal pump. However, the internal flow in the centrifugal pump with vaned diffuser can be extremely complexity, which will impact the performance and stable operation of the centrifugal pump. From the SST k-ω turbulence model, numerical analysis of the unsteady flow field inside the centrifugal pump was carried out by using numerical software ANSYS-CFX and experimental method. The pressure pulsation characteristics and unsteady flow field distribution of the centrifugal pump were studied by experimental method. The results showed that the pressure pulsation at the inlet of the guide vane was higher than that at the outlet of the guide vane, and the pulsation strength of the volute was smaller than that at the exit. Impeller pressure distribution was mainly affected by the rotor-stator interaction. The pressure distribution in the guide vane was affected by both rotor-stator interaction and asymmetric geometry of the spiral case;the static pressure of the suction surface near the outlet of the impeller was larger than that of the pressure surface due to the impeller exit wake flow. Because of the influence of the vane leading edge and the trailing edge of the impeller, the pressure distribution at the vane inlet of the guide vane was very complicated and the regularity was poor.

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江伟,李挺,王玉川,陈帝伊,李国君.导叶式离心泵内部流场数值模拟与试验[J].农业机械学报,2017,48(9):121-128.

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  • 收稿日期:2017-01-04
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  • 在线发布日期: 2017-09-10
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