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DESIGN OPTIMIZATION OF SPLITTER BLADE IMPELLER IN A CENTRIFUGAL PUMP

机译:离心泵分离器叶片叶轮的设计优化

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In order to improve suction performance, centrifugal pumps with an inducer are used for rocket pumps, liquid gas transport such as LNG, and general-purpose pumps. Since a higher suction performance than conventional pump is required, a splitter blade that consists of a long blade and a short blade is sometimes adopted. However, the design becomes more difficult due to the increased number of parameters. The stable operation over a wide flow rate range are required in the general-purpose pumps. Therefore it is necessary to design them so that unstable flow phenomena such as surges do not occur. However, the design method to avoid them is not well understood yet. In this study, we focused on the splitter blade impeller in a general-purpose low-speed centrifugal pump with an inducer. Six parameters such as leading edge position and trailing edge position of the short blade for both hub-side and tip-side were set as design ones. A multi-objective optimization method using a commercial software was applied to improve suction performance while maintaining high efficiency. Then obtained optimal shape were analyzed by CFD calculation and extracted the feature. Furthermore, optimized impellers were manufactured and confirmed the performance over a wide flow rate range by experiments. In addition, a optimizing design method that improves pump performance at lower cost was studied.
机译:为了改善抽吸性能,带有诱导器的离心泵用于火箭泵,液体气体输送,如LNG和通用泵。由于需要比传统泵更高的抽吸性能,有时采用由长叶片和短叶片组成的分离刀片。然而,由于参数的数量增加,设计变得更加困难。通用泵中需要在宽流量范围内进行稳定运行。因此,有必要设计它们,以便不会发生不稳定的流动现象。但是,避免它们的设计方法尚未得到很好的理解。在这项研究中,我们专注于分配器叶片叶轮,用诱导剂在通用的低速离心泵中。六个参数,例如毂侧和尖端的短叶片的前缘位置和后缘位置被设置为设计。应用了使用商业软件的多目标优化方法来提高吸力性能,同时保持高效率。然后通过CFD计算分析获得的最佳形状并提取该特征。此外,制造优化的叶轮并通过实验证实了通过宽流量范围内的性能。此外,研究了改善泵性能以较低成本的优化设计方法。

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