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Advanced Hydrodynamic Design Of Vertical Diffuser Pumps Using Computational Fluid Dynamics

机译:立式扩散器泵的先进流体力学设计,采用计算流体力学

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The current paper describes an investigation into the industrial use of CFD and other computational technologies for the three-dimensional hydrodynamic design of vertical diffuser pumps and outlines the complete product development process. Detailed description of the complete design process is described and numerous CFD predictions of the flow are presented with detailed examination of the several factors affecting the hydrodynamics of impeller and diffuser and staging of the pump. Furthermore, variations of important geometrical design parameters based on the design optimisation procedure are discussed in accordance to the CFD results. The capabilities of the 3-D hydrodynamic design through CFD and the importance of the three dimensional blade geometry are demonstrated by the fact that two different pump impellers were designed based on strict design constraints affecting their basic dimensions. Finally, an overview of the functional prototypes development is described and comparisons are carried out between overall performance predictions and experimental results.
机译:本文描述了对CFD和其他计算技术在立式扩散泵三维水动力设计中的工业应用的调查,并概述了完整的产品开发过程。详细描述了完整的设计过程,并通过对影响叶轮和扩压器的流体动力学以及泵的分级的几个因素的详细检查,对流量进行了许多CFD预测。此外,根据CFD结果讨论了基于设计优化程序的重要几何设计参数的变化。通过基于影响其基本尺寸的严格设计约束条件设计了两个不同的泵叶轮这一事实,证明了通过CFD进行3-D流体动力设计的能力以及三维叶片几何形状的重要性。最后,描述了功能原型的发展概况,并在整体性能预测和实验结果之间进行了比较。

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