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Numerical Analysis on Solid Particle Erosion in Elbow of a Slurry Conveying Circuit

机译:浆料输送电路弯头固体颗粒腐蚀的数值分析

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This study investigates the solid particle erosion in an elbow of a slurry conveying circuit by using a commercial computational fluid dynamics (CFD) code FLUENT. Erosion wear was predicted by using the Euler-Lagrange model applied with a turbulence scheme of standard k-epsilon. In the present study, the effect of various design parameters, namely radius of bend-to-pipe diameter (r/D) ratio, pipe diameter (D), bend curvature angle, and bend radius angle, was studied. The radius of the r/D ratio varied from 1.4 to 1.7. The flow velocity varied between 2 and 5 m/s and the solid concentration was kept constant, i.e., 10 vol.%. The mean size fraction of bottom ash varied from 102 to 300 pm. Numerical simulation results show that erosion rate increases with velocity, particle size, and pipe diameter. The optimum value of the r/D ratio was between 1.5 and 1.6. Lower erosion wear occurred near the entrance of the elbow and reached the maximum near 600 of the bend curvature. The particle size range of 162-230 pm was found critical for high erosion wear. (C) 2020 American Society of Civil Engineers.
机译:该研究通过使用商业计算流体动力学(CFD)代码流畅,研究了浆料输送电路弯头中的固体颗粒侵蚀。通过使用具有标准K-epsilon的湍流方案的欧拉拉格朗日模型来预测侵蚀磨损。在本研究中,研究了各种设计参数的效果,即弯管直径(r / d)比,管直径(d),弯曲曲率角度和弯曲半径角度的效果。 R / D比的半径从1.4到1.7变化。流速在2和5m / s之间变化,固体浓度保持恒定,即10体积%。%。底灰的平均尺寸分​​数在102至300μm中变化。数值模拟结果表明,腐蚀速率随速度,粒径和管道而增加。 R / D比的最佳值在1.5和1.6之间。肘部入口处发生较低的侵蚀磨损,达到弯曲曲率的最大近600。对于高侵蚀磨损,发现粒度为162-230pm。 (c)2020年美国土木工程师协会。

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