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DESIGN OPTIMIZATION OF A MIXED FLOW WATERJET PUMP FOR PERFORMANCE IMPROVEMENT INVOLVING CAVITATION

机译:混入式水射流泵的优化设计,可改善涉及空化的性能

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A mixed-flow waterjet pump with a vaneless diffuser is treated to improve its hydraulic efficiency as well as cavitation performance. In order to conduct the design optimization, the authors apply a multiobjective strategy combined with design of experiments (DOE), computational fluid dynamics (CFD), inverse design method, surface response method (RSM) and non-dominated sorting genetic algorithm-Ⅱ (NSGA-Ⅱ). The hydraulic efficiency and the total vapor volume are selected as the optimization targets, and nine parameters are used to describe the blade shape with the same meridional section. For numerical simulation, RANS method is applied with SST k-ω turbulence model and a mass transfer cavitation model based on the Rayleigh-Plesset equation. Optimal Latin hyper-cube design method is used in the design of experiments to uniformly sample in variation ranges and global optimization is then conducted by using non-dominated sorting genetic algorithm-Ⅱ (NSGA-Ⅱ) based on the input-target approximation functions built by the response surface model (RSM). The optimization results demonstrate that both hydraulic efficiency and cavitation performance are improved at the design point through this multiobjective strategy. Based on analysis of the internal flows, secondary flows would be important contributor to the hydraulic loss as well as the nonuniform flow at impeller exit, and can be suppressed by adjusting the blade load along the hub or shroud by using the inverse design method.
机译:带有无叶片扩压器的混流喷水泵经过处理,可提高其水力效率和气蚀性能。为了进行设计优化,作者将多目标策略与实验设计(DOE),计算流体力学(CFD),逆设计方法,表面响应方法(RSM)和非支配排序遗传算法Ⅱ相结合( NSGA-Ⅱ)。选择水力效率和总蒸汽量作为优化目标,并使用九个参数描述具有相同子午截面的叶片形状。为了进行数值模拟,将RANS方法与SSTk-ω湍流模型和基于Rayleigh-Plesset方程的传质空化模型一起应用。在实验设计中,采用最佳拉丁超立方体设计方法对变化范围内的样本进行均匀采样,然后基于所建立的输入目标逼近函数,使用非支配排序遗传算法-Ⅱ(NSGA-Ⅱ)进行全局优化。通过响应面模型(RSM)。优化结果表明,通过这种多目标策略,在设计点上既提高了液压效率,又提高了气蚀性能。基于内部流的分析,二次流将对水力损失以及叶轮出口处的不均匀流产生重要影响,并且可以通过使用逆向设计方法调整沿轮毂或护罩的叶片载荷来抑制这种情况。

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