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Design Optimization of Mixed-flow Pump Impellers and Diffusers in a Fixed Meridional Shape

机译:混合流动泵叶轮和漫射器中的漫射器中的设计优化

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In this paper, design optimization for mixed-flow pump impellers and diffusers has been studied by using a commercial CFD code and DOE(design of experiments). We also discussed how to improve the performance of the mixed-flow pump by designing the impeller and diffuser in the mixed-flow pump. Geometric design variables were defined by the vane plane development which indicates the blade-angle distributions and length of the impeller and the diffusers. The vane plane development was controlled by using blade-angle in a fixed meridional shape. First the design optimization of the defined impeller geometric variables was done, and then the flow characteristics were analyzed in the point of incidence angle at the diffuser leading edge for the optimized impeller. Then design optimizations of the defined diffuser shape variables were performed. The importance of the geometric design variables was analyzed by using 2~1 factorial designs, and the design optimization of the geometric variables were determined using the response surface method. The objective functions are defined as the total head and the total efficiency at the design flow-rate. From the comparison of CFD results between optimized pump and base design model, the reason for the performance improvement was discussed.
机译:在本文中,为混流泵叶轮和扩散器优化设计进行了研究使用商业CFD代码和DOE(实验设计)。我们还讨论了如何通过设计的混流泵叶轮和扩散,提高混流泵的性能。几何设计变量是由叶片平面发展,其指示在叶轮和扩散器的叶片角分布和长度限定。叶片平面展开是通过在一个固定的子午形状使用叶片角度控制。第一定义叶轮几何变量的优化设计已完成,然后流程特性在入射角为在优化的叶轮扩散器前缘的点进行分析。然后进行规定的扩散器形状变量的设计优化。几何设计变量的重要性通过使用2〜1因子设计分析,并使用该响应面法测定的几何变量的优化设计。目标函数被定义为总的头部,并在设计流率的总效率。从优化的泵和底座设计模型之间CFD结果的比较,讨论了性能改进的原因。

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