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Application of the Modified Inverse Design Method in the Optimization of the Runner Blade of a Mixed-Flow Pump

机译:改进的逆设计方法在混合流动泵的旋流器叶片优化中的应用

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摘要

Abstract To improve the design speed and reduce the design cost for the previous blade design method, a modified inverse design method is presented. In the new method, after a series of physical and mathematical simplifications, a sail-like constrained area is proposed, which can be used to configure different runner blade shapes. Then, the new method is applied to redesign and optimize the runner blade of the scale core component of the 1400-MW canned nuclear coolant pump in an established multi-optimization system compromising the Computational Fluid Dynamics (CFD) analysis, the Response Surface Methodology (RSM) and the Non-dominated Sorting Genetic Algorithm-II (NSGA-II). After the execution of the optimization procedure, three optimal samples were ultimately obtained. Then, through comparative analysis using the target runner blade, it was found that the maximum efficiency improvement reached 1.6%, while the head improvement was about 10%. Overall, a promising runner blade inverse design method which will benefit the hydraulic design of the mixed-flow pump has been proposed.
机译:摘要提高了设计速度,降低了先前刀片设计方法的设计成本,提出了一种改进的逆设计方法。在新方法中,在一系列物理和数学简化之后,提出了一种帆限制区域,该区域可用于配置不同的转轮刀片形状。然后,在建立的多优化系统中,将新方法应用于重新设计并优化1400 MW罐头核冷却液泵的规模核心部件的转子叶片,该核心核心核心泵损失了计算流体动力学(CFD)分析,响应表面方法( RSM)和非主导的分类遗传算法-II(NSGA-II)。在执行优化过程之后,最终获得了三种最佳样本。然后,通过使用目标流道刀片的比较分析,发现最高效率提高达到1.6%,而头部改善约为10%。总的来说,已经提出了一种有效的跑步者叶片逆设计方法,该方法将有利于混合流泵的液压设计。

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