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EROSION WEAR AND PERFORMANCE SIMULATION OF CENTRIFUGAL PUMP FOR SOLID-LIQUID FLOW

机译:离心泵用于固液流动的侵蚀磨损和性能模拟

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Erosion wear caused by solid particles is recognized as one of the major concerns for centrifugal pumps. In this paper, a two-way coupled Eulerian-Lagrangian approach is employed to solve the solid-liquid flow in the centrifugal pump. The erosion model developed in the Erosion/Corrosion Research Center (E/CRC), combined with the Grant and Tabakoff particle-wall rebound model, are employed to predict particles behaviors and erosion wear. Three-dimensional transient calculation of the centrifugal pump for solid-liquid flow is carried out to research the performance and erosion wear of centrifugal pump. The influence of concentrations and diameters of solid particles are also investigated. The results show that the existence of solid particles decreases the static pressure and the velocity of liquid. The frequency of impingement and rebound will increase with the increase of the concentrations of solid particles. The middle of the hub and the trailing edge of blades pressure side are the most serious erosion regions.
机译:由固体颗粒引起的侵蚀磨损被认为是离心泵的主要问题之一。本文采用双向耦合的欧拉拉格朗日方法来解决离心泵中的固液流。侵蚀/腐蚀研究中心(E / CRC)中开发的侵蚀模型与赠款和塔巴瓦夫粒子壁回弹模型相结合,用于预测粒子行为和侵蚀磨损。对固体流动的离心泵的三维瞬态计算进行了研究离心泵的性能和腐蚀磨损。还研究了固体颗粒的浓度和直径的影响。结果表明,固体颗粒的存在降低了液体的静压和液体速度。冲击和反弹的频率随着固体颗粒浓度的增加而增加。轮毂的中间和叶片的后缘压力侧是最严重的侵蚀区域。

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