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Optimization of Helico-Axial Multiphase Pump Impeller Based on Orthogonal Experimental Design

机译:基于正交实验设计的螺旋轴向多相泵叶轮优化

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In order to further optimize the helico-axial oil gas multiphase pump with higher efficiency and pressure rise, the orthogonal design method, numerical simulation and experiment investigation had been presented in this paper. Initially, for the purpose of obtaining the optimum parameters of multiphase pump with the pressure rise and efficiency as the evaluation targets, the L_9(3~4) orthogonal table was implemented, the four parameters as factors are flange inlet angle, flange outlet angle, hub half cone angle and inlet top-hub ratio which generated nine combinations of the four parameters. Reynolds Averaged Navier-Stokes (RANS) was adopted to simulate every combination obtained by orthogonal design method, and the data of nine sets of evaluation targets were acquired which could reflect the external characteristic of the multiphase pump. Through analyzing the evaluation targets orthogonal design, the optimized combination parameters had been obtained. Then the new optimal impeller was processed and tested on the new test stand. After that, external characteristic comparison between original and optimized multiphase pump were performed in different working condition, such as the rotate speed were 3000rpm, 3600rpm, 3900rpm, 4200rpm, 4500rpm. The result showed that pressure rise and efficiency were increased respectively, also indicated the orthogonal design method combined with numerical simulation could be used for design of multiphase pump.
机译:为了进一步优化具有更高效率和压力升高的斜轴油气多相泵,本文提出了正交设计方法,数值模拟和实验研究。最初,为了获得以压力上升和效率为评估目标的多相泵的最佳参数,实施了L_9(3〜4)正交表,其中四个参数是法兰入口角,法兰出口角,轮毂半锥角和进气口上轮毂比产生了四个参数的九种组合。采用雷诺平均Navier-Stokes(RANS)模拟正交设计方法获得的每种组合,并获取了九套评价指标的数据,这些数据可以反映多相泵的外部特性。通过分析评价指标的正交设计,获得了优化的组合参数。然后,在新的测试台上对新的最佳叶轮进行处理和测试。此后,在不同的工作条件下,如转速分别为3000rpm,3600rpm,3900rpm,4200rpm,4500rpm,进行了原始和优化的多相泵之间的外部特性比较。结果表明,压力上升和效率分别增加,也表明正交设计方法与数值模拟相结合可用于多相泵的设计。

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