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Influence of Spanwise Distribution of Impeller Exit Circulation on Optimization Results of Mixed Flow Pump

机译:叶轮出口循环的影响对混合流动泵优化结果的影响

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摘要

The spanwise distribution of impeller exit circulation (SDIEC) has an important influence on the performance of the impeller. To quantitatively study the influence of SDIEC on optimization results, a comprehensive optimization system composed of the computational fluid dynamics, inverse design method, design of experiment, surrogate model, and optimization algorithm was used to optimize a mixed flow pump impeller in two different cases. In the first case, the influence of SDIEC was ignored, while in the second case, the influence of SDIEC was considered. The result shows that the optimization upper limit can be further improved when the influence of SDIEC is considered in the optimization process. The pump efficiency of the preferred optimized impeller F1 obtained in the first case at 1.2Qdes, 1.0Qdes, and 0.8Qdes are increased by 6.48%, 2.41%, and 0.06%, respectively, over the baseline model. Moreover, the pump efficiency of the preferred optimized impeller S2 obtained in the second case further increased by 0.76%, 1.24%, and 1.21%, respectively, over impeller F1. Furthermore, the influence of SDIEC on the performance of the mixed flow pump is clarified by a comparative analysis of the internal flow field.
机译:叶轮出口循环(SDIEC)的翼展分布对叶轮的性能具有重要影响。为了定量地研究SDIEC对优化结果的影响,通过计算流体动力学,逆设计方法,实验,代理模型和优化算法组成的综合优化系统,用于在两个不同的情况下优化混合流量泵叶轮。在第一种情况下,忽略了SDIEC的影响,而在第二种情况下,考虑了SDIEC的影响。结果表明,当在优化过程中考虑SDIEC的影响时,可以进一步提高优化上限。在基线模型中,在1.2QDES,1.0qdes和0.8qdes的第一种情况下,在1.2QDES,1.0qdes和0.8qdes中获得的优选优化叶轮F1的泵效率分别增加了6.48%,2.41%和0.06%。此外,泵的效率优选优化叶轮S2在第二种情况下进一步增加分别为0.76%,1.24%,和1.21%,获得的,经叶轮F1。此外,通过内部流场的比较分析阐明了Sdiec对混合流动泵的性能的影响。

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