A numerical study of the slurry erosion in 90° horizontal elbows

IF 4.8 Q2 ENERGY & FUELS Journal of Pipeline Science and Engineering Pub Date : 2024-03-01 DOI:10.1016/j.jpse.2023.100149
Yijie Wang , Xin Wang , Peijuan Shang , Zhenkang Xu , Qiyu Huang
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Abstract

The slurry erosion processes of horizontal elbows are investigated numerically using an Eulerian-Lagrangian method coupled with particle rebound and erosion model. First, a mechanical model for the internal multiphase flow involving slurry erosion in the 90° horizontal elbow is established and the corresponding governing equations are presented. Then, a two-way coupled numerical solution procedure is developed and its accuracy and stability are examined carefully using benchmark pipe flow models with experimental results. Using the validated numerical methods, the effects of flow velocity, fluid density and fluid viscosity on the flow and slurry erosion in the horizontal elbow are analyzed in detail. Finally, a prediction method of erosion rate distribution based on the pipe Froude number, particle Stokes number and the Dean number is proposed. In this method the pipe Froude number is employed to qualify the effect of ununiform distribution of particles, particle Stokes number and Dean number are combined to qualify the effects of inertia force, drag force and secondary flow. Using this approach, the location of the maximum erosion rate in horizontal elbows under different operating conditions can be predicted more conveniently.

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90° 水平弯头中泥浆侵蚀的数值研究
采用欧拉-拉格朗日方法,结合颗粒反弹和侵蚀模型,对水平弯头的泥浆侵蚀过程进行了数值研究。首先,建立了 90° 水平弯头中涉及泥浆侵蚀的内部多相流力学模型,并给出了相应的控制方程。然后,开发了一种双向耦合数值求解程序,并利用基准管流模型和实验结果仔细检验了其准确性和稳定性。利用经过验证的数值方法,详细分析了流速、流体密度和流体粘度对水平弯管中的流动和泥浆侵蚀的影响。最后,提出了一种基于管道弗劳德数、颗粒斯托克斯数和迪安数的侵蚀率分布预测方法。在该方法中,管道弗劳德数用于确定颗粒不均匀分布的影响,而颗粒斯托克斯数和迪恩数则用于确定惯性力、阻力和二次流的影响。利用这种方法,可以更方便地预测不同工作条件下水平弯头中最大侵蚀率的位置。
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