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Numerical Simulation of Fine Particle Solid-Liquid Two-Phase Flow in a Centrifugal Pump

机译:离心泵细颗粒固液两相流的数值模拟

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To study the effect of fine particle size and volume concentration on the performance of solid-liquid two-phase centrifugal pump, the mixture multiphase flow model, RNG k-ε turbulence model, and SIMPLEC algorithm were used to simulate the two-phase flow of the centrifugal pump. The effects of particle size and volume concentration on internal pressure distribution, solid volume distribution, and external characteristics were analyzed. The results show that under the design discharge conditions, with the increase of particle size and volume concentration, the internal pressure of the flow field will decrease, and the volume fraction of solid phase in the impeller passage will also decrease as a whole. The solid particles gradually migrate from the suction surface to the pressure surface, and the particles in the volute channel are mainly concentrated in the flow channel near the outlet side of the volute. With the increase of particle size and volume concentration, the negative pressure value at the inlet of centrifugal pump increases, the total pressure difference at the inlet and outlet decreases, and the head and efficiency decrease accordingly.
机译:为了研究细粒尺寸和体积浓度对固液两相离心泵性能的影响,使用混合物多相流动模型,RNG K-ε湍流模型和简单算法来模拟两相流离心泵。分析了粒度和体积浓度对内压分布,固体分布和外部特征的影响。结果表明,在设计放电条件下,随着粒径和体积浓度的增加,流场的内部压力将降低,叶轮通道中固相的体积分数也将整体减小。固体颗粒逐渐从吸入表面迁移到压力表面,蜗壳通道中的颗粒主要集中在蜗壳的出口侧附近的流动通道中。随着粒度和体积浓度的增加,离心泵入口处的负压值增加,入口和出口处的总压力差降低,并且头部和效率相应地减小。

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