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CFD Based Erosion Modelling of Abrasive Waterjet Nozzle using Discrete Phase Method

机译:基于CFD的磨料喷水嘴离散相侵蚀建模。

摘要

In Abrasive Waterjet (AWJ) machining, the nozzle is the most critical component that influences the performance, precision and economy. Exposure to a high speed jet and abrasives makes it susceptible to wear erosion which requires for frequent replacement. The present works attempts to simulate the erosion of the nozzle wall using computational fluid dynamics. The erosion rate of the nozzle was simulated under different operating conditions. The simulation was carried out in several steps which is flow modelling, particle tracking and erosion rate calculation. Discrete Phase Method (DPM) and K-ε turbulence model was used for the simulation. Result shows that different operating conditions affect the erosion rate as well as the flow interaction of water, air and abrasives. The simulation results correlates well with past work.
机译:在磨料水刀(AWJ)加工中,喷嘴是影响性能,精度和经济性的最关键组件。暴露于高速射流和研磨剂会使它易于磨损,需要经常更换。本工作试图使用计算流体动力学来模拟喷嘴壁的侵蚀。在不同的操作条件下模拟喷嘴的腐蚀速率。模拟是分几个步骤进行的,即流动建模,颗粒跟踪和腐蚀速率计算。仿真采用离散相方法(DPM)和K-ε湍流模型。结果表明,不同的工作条件会影响腐蚀速率以及水,空气和磨料的流动相互作用。仿真结果与过去的工作非常相关。

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