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Numerical Investigation on Hydrodynamic Characteristics of a Centrifugal Pump with a Double Volute at Off-Design Conditions

机译:非设计条件下双蜗壳离心泵水动力特性的数值研究

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Severe radial thrust under off-design operating conditions can be a harmful factor for centrifugal pumps. In the present work, effects of geometry of a double volute casing on the hydrodynamic performance of a centrifugal pump have been investigated focusing on off-design conditions. Three-dimensional steady Reynolds-averaged Navier-Stokes analysis was carried out by using shear stress transport turbulence model. Numerical results for the hydrodynamic performance of the centrifugal pump were validated compared with experimental data. The hydraulic efficiency and radial thrust coefficient were used as performance parameters to evaluate the hydrodynamic characteristics of the centrifugal pump. The cross-sectional area ratio of the volute casing, the expansion coefficient of the rib structure, the distance between the rib starting point and volute entrance, and radius and width of the volute entrance, and length of the rib structure, were selected as geometric parameters. Results of the parametric study show that the performance parameters are significantly affected by the geometric variables and operating conditions. Optimal configurations of the double volute casing based on the design of experiments technique show outstanding performance in terms of the efficiency and radial thrust coefficient.
机译:在非设计工况下严重的径向推力可能是离心泵的有害因素。在目前的工作中,已经着重于非设计条件下研究了双蜗壳的几何形状对离心泵的流体动力性能的影响。利用剪切应力传递湍流模型进行了三维稳态雷诺平均Navier-Stokes分析。与实验数据进行比较,验证了离心泵水动力性能的数值结果。将液压效率和径向推力系数用作性能参数,以评估离心泵的流体动力学特性。选择蜗壳的截面积比,肋结构的膨胀系数,肋起点与蜗壳入口之间的距离,蜗壳入口的半径和宽度以及肋结构的长度作为几何形状参数。参数研究的结果表明,性能参数受到几何变量和运行条件的显着影响。基于实验技术设计的双蜗壳优化配置在效率和径向推力系数方面表现出卓越的性能。

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