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A CFD based correlation for erosion factor for long-radius elbows and bends

机译:基于CFD的长半径弯头侵蚀因子的相关性和弯曲

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A model for predicting sand erosion in 90 degree elbows and bends has been developed based on computational fluid dynamics (CFD), particle tracking and erosion data. After the flow field was obtained from the flow (CFD) model, particles were introduced into the flow and particle trajectories were computed using a Lagrangian approach. A model was also implemented that accounts for the interaction between the particles and the target material. Based on predicted particle impingement velocities, erosion rates and penetration rates were predicted using the empirical equations for erosion ratio. The predicted penetration rates are compared with available experimental data for several different elbows. The agreement between the predicted penetration rates and the experimental data is good. The erosion model is applied to standard (short-radius) elbows and long-radius elbows to understand why long radius elbows have lower erosion (penetration) rates. In addition, based on many predictions and erosion rate results, a new CFD based correlation is developed and is recommended as a first-order approximation for engineering calculations to account for effects of elbow radius on erosion in long-radius elbows. This equation is for computing the ratio of the wall thickness loss (or the penetration rate) in a long-radius elbow to the penetration rate of a standard (short-radius) elbow. The results from the correlation agree well with the trend of available data in the literature.
机译:基于计算流体动力学(CFD),粒子跟踪和侵蚀数据,开发了一种预测90度肘部和弯曲的砂腐蚀模型。在从流动场(CFD)模型获得流场后,将颗粒引入流动中,使用拉格朗日方法计算颗粒轨迹。还实施了模型,其考虑了粒子和目标材料之间的相互作用。基于预测的颗粒撞击速度,使用经验方程进行侵蚀比预测侵蚀速率和穿透速率。将预测的渗透率与几种不同肘部的可用实验数据进行比较。预测的渗透率与实验数据之间的协议是好的。侵蚀模型应用于标准(短半径)肘部和长半径弯头,以了解为什么长的半径弯头具有较低的侵蚀(渗透)速率。此外,基于许多预测和侵蚀率的结果,开发了一种新的CFD相关性,建议作为工程计算的一阶近似,以解释弯头半径对长半径弯头侵蚀的影响。该等式用于计算长半径弯头中的壁厚损失(或穿透速率)与标准(短半径)弯​​头的穿透速率的比率。相关结果与文献中的可用数据的趋势很好。

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